List of Publications
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2025
Is dark energy necessary for the sustainability of traversable wormholes?. ( Ayan Banerjee, Sudan Hansraj, Anirudh Pradhan, Abdelghani Errehymy). Chin. Phys. C, Vol. 49 , No. 1 (2025) 015101 (15 pages). DOI: 10.1088/1674-1137/ad73ad; arXiv:2402.11348v2gr-qc] 25 April 2024.
Quark stars in f(R,T) gravity:Mass-to-radius profiles and observational data. ( Ayan Banerjee, I. Sakalli, B. Dayanandan, Anirudh Pradhan ). Chin. Phys. C Vol. 49, No. 1, (2025) 015102 (10 pages). DOI: 10.1088/1674-1137/ad86af
Properties of interacting quark star in light of Rastall gravity . (Ayan Banerjee, Anirudh Pradhan, Izzet Sakalli, Archana Dixit ). Class. 56 Quant. Grav. Vol. 42, No 2, 17 January (2025) 025008 (17 pages). https://doi.org/10.1088/1361-6382/ad9c0f; arXiv:2412.09306[gr-qc] 12 Dec 2024.
f(T, TG) gravity theory: observational constraints for Barrow holographic dark energy with Hubble and Granda-Oliveros cutoff . ( Sanjeev Gupta, Archana Dixit, Anirudh Pradhan, K. Ghaderi). Physica Scripta, Vol. 100, No 1, January (2025) 015035 (20 pages). https://doi.org/10.1088/1402-4896/ad9e51.
Cosmological dynamics of FRW universe in presence of tachyonic field. (Anup Kumar Singha, Alok Sardar, Ujjal Debnath, Anirudh Pradhan). Physica Scripta, Vol. 100, No 1, January (2025) 015038 (12 pages). https://doi.org/10.1088/1402-4896/ad9e3b
Properties of white dwarf stars within Rainbow gravity . (T. Tangphati, G. Panotopoulos, Ayan Banerjee, Anirudh Pradhan ). Phys. Dark Univ. Phys. Dark Univ. Vol. 47, Issue February (2025) 101741 (7 pages). https://doi.org/10.1016/j.dark.2024.101741; arXiv:2411.12526v1[gr-qc]19 Nov 2024.
Different horizon cut-offs for Tsallis, R´enyi and Sharma-Mittal holographic dark energies in Horava-Lifshitz gravity. (Alok Sardar, Sayani Maity, Ujjal Debnath, Anirudh Pradhan). Annals of Physics, Vol. 473, Issue February (2025) 169891 (16 pages). https://doi.org/10.1016/j.aop.2024.169891
Phase transition of RN-AdS black hole with dark energy. (K. Ghaderi, Anirudh Pradhan, Archana Dixit, H. S. Shekh ). Int. J. Geom. Methods Mod. Phys. (2025) 2450321. https://doi.org/10.1142/S0219887824503213
A cyclic Ricci-Gauss-Bonnet universe . ( Anirudh Pradhan, Nasr Ahmed, Archana Dixit ). Int. J. Geom. Methods Mod. Phys. (2025) 2550017 (23 pages). https://doi.org/10.1142/S0219887825500173
Effects of anisotropic pressure on interacting quark star structure. (Juan M. Z. Pretel, Takol Tangphati, Ayan Banerjee, Anirudh Pradhan). Phys. Lett. B, Vol. 848, Issue January (2024), 138375 (12 pages). https://doi.org/10.1016/j.physletb.2023.138375 ; arXiv:2311.18770 v1[grqc].
Amended FRW Universe: Thermodynamics and Heat Engine. (Jhumpa Bhadra, Ujjal Debnath, Anirudh Pradhan). Europ. Phys. J. C, Vol. 84, Issue February (2024), 131 (12 pages). https://doi.org/10.1140/epjc/s10052-024-12484-4
Reconstruction of ΛCDM model from f(T) gravity in viscous-fluid universe with observational constraints. ( Anirudh Pradhan, A. Dixit, M. Zeyauddin ). Int. J. Geom. Methods Mod. Phys. Vol. 21 No. 1 (2024) 2450027 (23 pages). https://doi.org/10.1142/S0219887824500270.
Anisotropic dark energy models in f(R, LM)-gravity. (M. Zeyauddin, A. Dixit, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 21 No. 2 Feb(2024) 2450038 (24 pages). https://doi.org/10.1142/S0219887824500385.
Investigating Stable Quark Stars in Rastall-Rainbow Gravity and Their Compatibility with Gravitational Wave Observations. (Takol Tangphati, Dhruba Jyoti Gogoi, Anirudh Pradhan, Ayan Banerjee). J. High Energy Astrophys. Vol. 42 Issue June (2024) 12-20. https://doi.org/10.1016/j.jheap.2024.02.006; arXiv:2311.16869v1[gr-qc]
Bianchi type-III THDE quintessence model with hybrid expansion law. (Gunjan Varshney, Anirudh Pradhan, Umesh Kumar Sharma ). Can. J. Phys. Vol. 102 No. 3, March (2024) 199-209. https://doi.org/10.1139/cjp2023-0201; arXiv: 2108.07157[physics.gen.ph].
Observational constraints on parameterized deceleration parameter with f(Q, T) gravity. ( S. H. Shekh, A. Caliskan, G. Mustafa, S. K. Maurya, Anirudh Pradhan, E. G¨udekli). Int. J. Geom. Methods Mod. Phys. Vol. 21 No. 3, March (2024) 2450054 (24 pages). https://doi.org/10.1142/S0219887824500543
Non-Commutative Effects on Wormholes in Rastall-Rainbow Gravity. (Anirudh Pradhan, Safiqul Islam, M. Zeyauddin, and Ayan Banerjee). Int. J. Mod. Phys. D, Vol. 33 No. 2, 30 January (2004) 2450008 (16 pages). https://doi.org/10.1142/S0218271824500081; arXiv:2310.07181[gr-qc].
Wormholes and energy conditions in f(R, T) gravity . ( T. Tangphati, Ayan Banerjee, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 21 No. 6, May (2004) 2450109 (16 pages). https://doi.org/10.1142/S0219887824501093; arXiv:2305.07541v1[gr-qc].
Holographic dark energy inflation model in modified f(R,G) gravitational framework. ( K. Ghaderi, S. H. Shekh, K. Karimizadeh, Anirudh Pradhan). Indian J. Phys. Published online: 31-10-2023. https://doi.org/10.1007/s12648-023-02968-6
Symmetric teleparallel gravity with holographic Ricci dark energy. (S. H. Shekh, Anirudh Pradhan, Archana Dixit). Indian J. Phys. Vol. 98 Issue 7, June (2024) 2623-2632. https://doi.org/10.1007/s12648-023-03014-1
Quark stars in Rastall gravity with recent astrophysical observations . (Takol Tangphati, Ayan Banerjee, Izzet Sakall, Anirudh Pradhan ). Chin. J. Phys. Vol. 90 Issue August, (2024) 422-433. https://doi.org/10.1016/j.cjph.2024.03.045
Dark energy nature of logarithmic f(R, Lm)-Gravity models with Observational Constraints . (Archana Dixit, Anirudh Pradhan, M. Zeyauddin, J. Singh). Int. J. Mod. Phys. A, Vol. 39 Nos 7 & 8, 20 March (2024) 2450043 (17 pages). https://doi.org/10.1142/S0217751X2450043X
A flat FLRW dark energy model in f(Q,C)-gravity theory with observational constraints. (Anirudh Pradhan, Archana Dixit, M. Zeyauddin, S. Krishnannair ). Int. J. Geom. Methods Mod. Phys. Vol. 21 Issue 9, August (2024) 2450167 (21 pages). https://doi.org/10.1142/S0219887824501676
Reconstruction of F(T, TG) gravity model with scalar fields. ( Archana Dixit, S. Gupta, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. (2024) 2450183 (29 pages). https://doi.org/10.1142/S0219887824501834.
Exploring wormholes in f(R,T) gravity. (Anirudh Pradhan, Archana Dixit, Akram Ali, Ayan Banerjee). Int. J. Geom. Methods Mod. Phys. (2024) 2450206 (18 pages). DOI: 10.1142/S0219887824502062
Dark energy and dark matter interaction: A nonlinear dynamical system study. (Jyotirmay Das Mandal, Ujjal Debnath, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. (2024) 2450238(20 pages). DOI:10.1142/S0219887824502384.
Setup time analysis for stereotactic body radiotherapy in Halcyon O-ring linear accelerator without rotational correction ( Anirudh Pradhan). Radiological Physics and Technology (RPTE), https://doi.org/10.1007/s12194-024-00791-0
Interacting Bianchi type-V Universe: Observational Constraints. (Archana Dixit, Anirudh Pradhan, K. Ghaderi). Gravitation & Cosmology, Vol. 30, Issue 3, (2024) 376-391. DOI: 10.1134/S0202289324700282.
FLRW cosmology in Weyl type f(Q) gravity and observational constraints. (G. K. Goswami, J. K. Singh, Rita Rani, Anirudh Pradhan). J. High 54 Energy Astrophys. Vol. 43, Issue August, (2024) 105-113. https://doi.org/10.1016/j.jheap.2024.06.011 arXiv:2309.01233v2 [gr-qc].
Analysing Global Cancer Control: Progress of National Cancer Control Programs through Composite Indicators and Regression Modelling (Rohit Singh Chauhan, A. Munshi, Anirudh Pradhan). The paper submitted in J. Med. Phys. Vol. 49, Issue 2, April-June (2024) 225-231. DOI: 10.4103/jmp.jmp_21_24
The role of pressure anisotropy on quark stars in gravity’s rainbow . (Ayan Banerjee, Anirudh Pradhan, B. Dayanandan, Akram Ali ). Europ. Phys. J. C, Vol. 84, No 7, July (2024) 730 (pages 8). https://doi.org/10.1140/epjc/s10052-024-13120-x
Behaviors of Quark Stars in the Rainbow Gravity Framework . (Takol Tangphat, Izzet Sakall, Ayan Banerjee, Anirudh Pradhan ). Phys. Dark Univ., Vol. 46, December (2024) 101610 (pages 8). https://doi.org/10.1016/j.dark.2024.101610
Stability and phase transition of black holes in Einstein-Maxwell-dilaton gravity. (K. Ghaderi, Anirudh Pradhan, A. Mahmoodzadeh ). Nucl. Phys. B , Vol. 1006, September (2024) 116660 (pages 13). https://doi.org/10.1016/j.nuclphysb.2024.116660
Viscous modified Chaplygin gas with spherical top-hat collapse in modified theories of gravity. ( Rownak Kundu, Ujjal Debnath, Anirudh Pradhan). Phys. Scr. Vol. 99 , No. 9, (2024) 095024. https://dx.doi.org/10.1088/1402-4896/ad6e31
Cosmographic analysis of the dynamics of universe in higher dimensional compactified space with tachyonic field. (Anup Kumar Singha, Ujjal Debnath, Anirudh Pradhan). Can. J. Phys. Vol. 102 , No. 9, September (2024) 486-495. https://doi.org/10.1139/cjp-2023-0195
Power law cosmology in modified theory with thermodynamics analysis. ( J. K. Singh, Shaily, Anirudh Pradhan, A. Beesham). Phys. Dark Univ. Vol. 46 , December (2024) 101658 (10 page). https://doi.org/10.1016/j.dark.2024.101658; arXiv:2304.09917v2[gr-qc].
An Analysis of Radiotherapy Machines Requirements in India: Impact of the Pandemic and Regional Disparities (Rohit Singh Chauhan, A. Munshi, Anirudh Pradhan). J. Med. Phys. Vol. 49 , Issue 3, July-September (2024) 370-378. DOI:10.4103/jmp.jmp_20_24_55
Computation of bulk viscous pressure with observational constraints via scalar field in the General relativity and f (Q) gravity . (Archana Dixit, Sanjeev Gupta, Anirudh Pradhan, S. Krishnannair ). Astronomy and Computing, Vol. 49 , Issue October, (2024) 100885 (13pages). https://doi.org/10.1016/j.ascom.2024.100885
Five-dimensional compact stars in Einstein-Gauss-Bonnet gravity . (Juan M. Z. Pretel, Ayan Banerjee, Anirudh Pradhan ). Nuclear Phys. B, Vol. 1008 , Issue November, (2024) 116702 (10pages). https://doi.org/10.1016/j.nuclphysb.2024.116702
Wormholes in Rastall gravity and nonvacuum spacetime. (Ayan Banerjee, Safiqul Islam, Archana Dixit, Anirudh Pradhan). Gravitation & Cosmology, Vol. 30, Issue 4, (2024) 496-505. DOI: 10.1134/S0202289324700397
Logamediate inflation on the Swiss-cheese brane with varying cosmological constant . (Nasr Ahmed, Anirudh Pradhan ). Gravit. & Cosmol. Vol. 30, Issue 4, (2024) 523-535. DOI: 10.1134/S0202289324700397
Exploring dynamic dark energy models in f(T) gravity: A comparative study of NHDE, THDE, and BHDE . (S. H. Shekh, Anirudh Pradhan, S. P. Gaikwad, K. R. Mule ). Int. J. Theor. Phys. Vol. 63, Issue December, (2024) 301 (27 pages). https://doi.org/10.1007/s10773-024- 05833-2
Observational constraints on F(T, TG) gravity with Hubbles parametrization. ( S. H. Shekh, N. Myrzakulov, Anirudh Pradhan, A. Mussatayera). Symmetry, Vol 15, Issue 2, February (2023), 321 (13 pages). https://doi.org/10.3390/sym15020321.
Tsallis holographic dark energy scenario in viscous F(Q) gravity and Tachyon field. (Sanjeev Gupta, A. Dixit, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol 20, No 2, Feb (2023), 2350021 (23 pages). https://doi.org/10.1142/S0219887823500214.
Bianchi type-V transitioning model in Brans-Dicke theory with observa45 tional constraint . (Vinod K. Bhardwaj, Archana Dixit, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol 20, No 2, Feb (2023), 2350022(23 pages). DOI: 10.1142/S0219887823500226. arXiv:2203.11436[grqc].
Evaluation of Patient-Specific IMRT Quality Assurance and Point Dose Measurement for complex Head and Neck and Brain Cancer using Gafchromic EBT3 Film (Varsha R. Gedam, Anirudh Pradhan). Radiation Protection Dosimetry. Vol. 199, Issue 2, Feb (2023), 164-170. https://doi.org/10.1093/rpd/ncac250 . SCIE Q4.
Qualitative study of anisotropic Rastall cosmologies ( Ashutosh Singh, Anirudh Pradhan). Indian J. Phys. Vol. 97, No. 2, February (2023), 631-641. https://doi.org/10.1007/s12648-022-02406-z; arXiv:2206.05415[grqc].
Thermodynamics of the acceleration of the universe in κ(R, T) gravity model . (A. Dixit, Sanjeev Gupta, Anirudh Pradhan, A. Beesham). Symmetry, Vol. 15 , Issue 2, Feb (2023), 549 (19 pages). https://doi.org/10.3390/Sym15020549.
Calculation of set-up margin in frameless stereotactic radiotherapy accounting for translational and rotational patient positing error (A. Manikandan, Biplab Sarkar, A. Munshi, S. Krishnankutty, T. Ganesh, B. K. Mohanti, Sujatha Manikandan Anirudh Pradhan, S. Chandrasekharan). Jour. Cancer Research & Therapeutics. Vol. 19(2), Issue Jan-March (2023), 169-176. DOI:10.4103/jcrt 359 21. IF 1.331.
Observational constraints in accelerated emergent f(Q) gravity model. (S. H. Shekh, A. Bouali, G. Mustafa, Anirudh Pradhan, F. Jawad ). Class. Quantum Grav. Vol. 40, No. 5, 2 March (2023), 0555011 (21 pages). DOI:10.1088/361-6382/acp.w
Charged compact stars with colour-flavour-locked strange quark matter in f(R,T) gravity. (Takol Tangphati, Grigoris Panotopoulos, Ayan Banerjee, Anirudh Pradhan). Chin. J. Phys. Vol. 82, April, (2023), 62-74. https://doi.org/10.1016/j.cjp.2022.12.014
Strange quark star models from Rastall gravity. (A. Banerjee, Takol Tangphati, S. Hansraj, Anirudh Pradhan). Ann. Phys. Vol. 451, Issue April (2023), 169267 (11 pages). http://dx.doi.org/10.2139/ssrn.4222594
Possible existence of quark stars in Rastall gravity. (Ayan Banerjee, Takol Tangphati, Anirudh Pradhan). Int. J. Mod. Phys. D, Vol. 32, No. 05, 01 April (2023), 2350026 ( 18 pages). https://doi.org/10.1142/S0218271823500268
The criteria of the anisotropic quark star models in Rastall gravity. (T. Tangphati, A. Banerjee, S. Hansraj, Anirudh Pradhan). Ann. Phys. Vol. 452, Issue May, (2023), 169285 (17 pages). https://doi.org/10.1016/j.aop.2023.169285 ; arXiv:2210.01372[gr-qc].
Generalized Barrow entropic holographic dark energy with Granda-Oliver cut-off. (P. Garg, Anirudh Pradhan, V. K. Bhardwaj). Int. J. Geom. Methods Mod. Phys. Vol. 20, No. 5, April (2023), 2350082 (26 pages). https://doi.org/10.1142/S0219887823500822
Cosmological aspects of anisotropy in chameleonic Brans-Dicke gravity. (Ashutosh Singh, Anirudh Pradhan, A. Beesham). New Astronomy, Vol. 100, Issue May, (2023), 101995 (6 pages). https://doi.org/10.1016/j.newast.2022.101995
Modeling transit dark energy model in f(R, Lm)-gravity. (Anirudh Pradhan, D. C. Maurya, G. K. Goswami, A. Beesham). Int. J. Geom. Methods Mod. Phys. Vol. 20, No. 6, May (2023), 2350105(24 pages). https://doi.org/10.1142/S0219887823501050 . arXiv: 2209.14269[gr-qc].
The reconstruction of constant Jerk parameter with f(R, T) gravity. (Anirudh Pradhan, G. K. Goswami, A. Beesham). Jour. High Energy Astrophys. Vol. 38, Issue June, (2023), 12-21. https://doi.org/10.1016/j.jheap.2023.03.001 . arXiv:2303.14136[gr-qc].
Studying the optical depth behaviour of parametrized deceleration parameter in non-flat universe . (R. Kundu, U. Debnath, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, No. 07, (2023), 2350110 (21 pages). https://doi.org/10.1142/S0219887823501104.
Comparison of three radiotherapy techniques volumetric modulated arc therapy with variable and constant dose rate and intensity-modulated radiotherapy for the irradiation of five cancer sites (Varsha Raghunathji Gedam, Anirudh Pradhan). Journal of Biometrical Physics and Engineering. Published online 07-03-2023. DOI:10.31661/jbpe.v0i0.2210-1549.
THDE models with specific cut-offs and correspondence with quintessence field. (Archana Dixit, Priyanka Garg, Anirudh Pradhan). Int. J. Geom. 47 Methods Mod. Phys. Vol. 20, No. 08, (2023), 2350126 (24 pages). https://doi.org/10.1142/S0219887823501268.
Transit string dark energy models in f(Q) gravity . (D. C. Maurya, A. Dixit, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, No. 08, (2023), 2350134 (27 pages). https://doi.org/10.1142/S0219887823501347 . arXiv:2302.14104[gr-qc].
Observational constraints on transit reconstructed Tsallis f(T) gravity. ( S. H. Shekh, G. Mustafa, A. Caliskan, E. G¨udekli, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 12, October (2023) 2350207 ( 18 pages). https://doi.org/10.1142/S0219887823502079.
Noncommutative wormhole in non-minimal curvature-matter coupling of f(R) gravity with Gaussian and Lorentzian distributions. (Ujjal Debnath, Niyaz Uddin Molla, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 12, October (2023), 2350214 (28 page). https://doi.org/10.1142/S0219887823502146.
Accretion of Modified Chaplygin-Jacobi Gas and Modified Chaplygin-Abel Gas onto Schwarzschild Black Hole. (Puja Mukherjee, Ujjal Debnath, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 12, October (2023), 2350218 (13 page). https://doi.org/10.1142/S0219887823502183
Cosmic Expansion of the Universe Characterized by Anisotropic Viscous Fluid Cosmological Models. (Archana Dixit, Chanchal Chawla, Anirudh Pradhan). Can. J. Phys. Vol. 101, Issue 8, August (2023), 378-390. http://dx.doi.org/10.1139/cjp-2022-0318.
Transit f(Q,T) gravity model: Observational constraints with specific Hubble parameter. ( A. P. Kale, Y. S. Solanke, S. H. Shekh, Anirudh Pradhan). Symmetry. Vol 15 , Issue 10, (2023), 1835 (18 pages) https://doi.org/10.3390/sym1501835.
Reconstruction of an observationally constrained f(R, T) gravity model. (Anirudh Pradhan, G. K. Goswami, A. Beesham). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 10, 15 Sept (2023) 2350169 (23 pages). https://doi.org/10.1142/S0219887823501694 . arXiv:2304.11616[gr-qc].
The reconstruction of constant Jerk parameter with f(R, T) gravity in Bianchi-I spacetime. (Anirudh Pradhan, Gopikant Goswami, Syamala Krishnannair ). Europ. Phys. J. Plus. Vol. 138, Issue 5, (2023) 451 (12 pages). https://doi.org/10.1140/epjp/s13360-023-04057-3 ; arXiv:2305.14400[grqc].
Comparative analysis of setup margin calculation in cone-beam CT, by van Herk formula, using two different image registration methods . (Soumya Roy, Biplab Sarkar, Anirudh Pradhan). Journal of Radiotherapy in Practice, Vol. 22, (2023) e92 (1-8). https://doi.org/10.1017/S1460396923000122
A General Assessment of India’s Extremely Low Number of Transgender Cancer Patients. (B. Sarkar, T. Shahid, J. Bhattacharya, P. Chatterjee, L.N. Biswas, S. Goswami, T. Ghosh, S.K. Ghosh, and A. Pradhan). Int. J. Radiation Oncology*Biology*Physics. Vol. 117 , Issue 2, Supplement, 1 October (2023), e54. https://doi.org/10.1016/j.ijrobp.2023.06.766
New emergent observational constraints in f(Q, T) gravity model. ( S. H. Shekh, A. Bouali, Anirudh Pradhan, A. Beesham). Jour. High Energy Astrophys. Vol. 39, Issue August, (2023) 53-59. https://doi.org/10.1016/j.jheap.2023.06.004.
Gravitational Lensing: Dark energy models in non-flat FRW universe. (Rownak Kundu, Ujjal Debnath, Anirudh Pradhan). Eur. Phys. J. C Vol. 83, Issue 6, June (2023) 553 (16 pages). https://doi.org/10.1140/epjc/s10052-023-11675-9.
Efficient and Reliable Data Extraction in Radiation Oncology using Python Programming Language: A Pilot Study (Rohit Singh Chauhan, Anirudh Pradhan, A. Munshi, B. K. Mohanti). J. Med. Phys. Vol. 48, Issue 1, Jan-March (2023) 13-18. DOI: https://doi.org/10.4103/jmp.jmp_12_23
Application of a comprehensive treatment planning test for credentialing intensity-modulated radiotherapy and rapic arc in a true beam linear accelerator setup . (S. Roy, B. Sarkar, Anirudh Pradhan). J. Med. Phys. Vol. 48, Issue 2, April-June (2023), 204-209. DOI: https://doi.org/10.4103/jmp.jmp_56_22.
Customizing treatment scheduling windows with a time-margin recipe: A single-institutional study (Rohit Singh Chauhan, A. Munshi, Anirudh 49 Pradhan). J. Med. Phys. Vol. 48, Issue 2, April-June (2023), 181-188. DOI: https://doi.org/10.4103/jmp.jmp_113_22
An f(R, T) gravity based FLRW model and observational constraints. (Anirudh Pradhan, G. K. Goswami, Rita Rani, A. Beesham). Astronomy and Computing, Vol. 44, Issue Jul (2023), 100737(11 pages). https://doi.org/10.1016/j.ascom.2023.100737 . arXiv:2210.15433v3[gr-qc] 2 June 2023.
Low number of transgender persons with cancer: A survey assessment of the Indian scenario (B. Sarkar, Anirudh Pradhan). Cancer Research, Statistics, and Treatment, Vol. 6, Issue 2, April-June (2023), 235-238. DOI:10.4103/crst.crst_136_23.
f(T,B) gravity with statistically fitting of H(z). (S. H. Shekh, N. Myrzakulov, A. Bouali, Anirudh Pradhan). Commun. Theor. Phys. Vol. 75, Issue 9, September (2023), 095401 (12 page). DOI: https://doi.org/10.1088/1572-9494/ace3ae
Observational constraint in Kantoswki-Sachs f(R) gravity model with strange quark matter ( Archana Dixit, Vinod Kumar Bhardwaj, Anirudh Pradhan, Syamala Krishnannair). Indian Jour. Phys. Vol. 97, Issue 12, October (2023), 095401, 3695-3705. http://dx.doi.org/10.1007/s12648-023-02669-0
Traversable wormholes in Rastall-Rainbow Gravity. (Takol Tangphati, C. R. Muniz, Anirudh Pradhan, Ayan Banerjee). Phys. Dark Univ. Vol. 42, Issue December, (2023), 101364(8page). https://doi.org/10.1016/j.dark.2023.101364 arXiv:2309.01976[gr-qc] 05 Sep (2023).
Anisotropic quark stars in energy-momentum squared gravity. ( T. Tangphati, A. Errehymy, A. Banerjee, Anirudh Pradhan). J. High Energy Astrophys. Vol. 40, Issue November (2023), 68-75. https://doi.org/10.1016/j.jheap.2023.11.002
Planning system dependent recommendations of intensity modulated technique for Breast Radiotherapy: A literature review based adaptation and institutional dosimetric experience from a large volume tertiary cancer care hospital. (B. Sarkar, Anirudh Pradhan). J. Med. Phys. Vol. 48, Issue 3, July-September (2023) 221-229. DOI:10.4103/jmp.jmp_51_23
Observational constraints for an axially symmetric transitioning model with bulk viscosity parametrization . (A. Dixit, Anirudh Pradhan, V. K. Bhardwaj, A. Beesham). Astronomy and Computing, Vol. 45, Issue October (2023) 100768 (13 pages). https://doi.org/10.1016/j.ascom.2023.100768 arXiv:2212.10413v1[gr-qc]20 December 2022.
Patent wait times for daily outpatient radiotherapy appointment ( A Singlecentre study). (S. Roy, B. Sarkar, Anirudh Pradhan, A. Munshi, Rohit Chauhan). Journal of Radiotherapy in Practice, Vol. 22, Issue 3, (2023), e88 (1-5). https://doi.org/10.1017/S1460396923000055.
Gender Parity in Healthcare: A chronical of escalating success rate of female radiation oncologists in India (B. Sarkar, Anirudh Pradhan). South Asian Journal of Cancer, Vol. 12, Issue 4, (2023), 311-313. DOI https://doi.org/10.1055/s-0042-1756631.
Interacting two fluid models in modified theories of gravitation. (S. H. Shekh, F. Rahaman, Anirudh Pradhan, Archana Dixit). Indian J. Phys. Vol. 97, Issue 13, November (2023) 4093-4116. https://doi.org/10.1007/s12648-023-02691-2
Observational constraints in general Bianchi models of f(R,T) gravity. ( Archana Dixit, M. Zeyauddin, Anirudh Pradhan). Europ. Phys. Jour. Plus, Vol. 138, Issue 12, December (2023) 1092 (15pages). https://doi.org/10.1140/epjp/s13360-023-04719-2
Comparison of Rapid Arc and Intensity Modulated Radiotherapy in a True Beam Linear Accelerator for 6 MV: Application of AAPM TG-119 tests in treatment planning and quality assurance . (S. Roy, B. Sarkar, Anirudh Pradhan). Precision Radiation Oncology, Vol. 7, Issue 4, December (2023) 256-267. https://doi.org/10.1002/pro6.1212
Study of Yang-Mills condensate dark energy in the framework of BransDicke theory . (Alok Sardar, Pameli Saha, Ujjal Debnath, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 14, December (2023), 2450003 (18 pages). https://doi.org/10.1142/S0219887824500038.
Anisotropic quark stars within 4D Einstein-Gauss-Bonnet gravity. ( Takol Tangphati, Grigoris Panotopoulos, Ayan Banerjee, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 14, December (2023) 2450011 (18 pages). https://doi.org/10.1142/S0219887824500117
Parameterization of Hubble parameter in ˆf(T, TG)-gravity model with Tachyon field . ( Anirudh Pradhan, Archana Dixit, Sanjeev Gupta). Int. J. Geom. Methods Mod. Phys. Vol. 20, Issue 14, December (2023) 2450013 (23 pages). https://doi.org/10.1142/S0219887824500130
A comparative study of Wormhole models in f(R, T) gravity. ( Chanchal Chawla, Archana Dixit, Anirudh Pradhan, S. Krishnannair ). Int. J. Mod. Phys. D Vol. 32, Issue 16, December (2023) 2350107 (20 pages). https://doi.org/10.1142/S0218271823501079
Evaluation of the Dynamics of Large Scale Covid-19 Related Literature through Bibliometric Analysis from a Mathematical Standpoint (Biplab Sarkar, A. Munshi, B. Ghosh, T. Ganesh, A. Manikandan, S. S. Biswal, T. Shahid, R. Bhaskar, S. Sengupta, S. Roy Choudhury, J. Bhattacharya, M. Gazi, A. De, K. George, T. Ghosh, J. Akhtar, S. Mondal, M. Mukherjee, R. Gupta, S. Roy, K. Jassal, S. Goswami, S. Ghosh, P. Chatterjee, L. N. Biswas, S. Bandyopadhyay, Anirudh Pradhan, B. K. Mohanti). Journal of Scientometric Research, Vol. 11, Issue 1, January-April (2022) 47-54. DOI:10.5530/jscires.11.1.5.
Cosmological scenario in κ(R, T ) gravity. (Archana Dixit, Anirudh Pradhan and Raghavendra Chaubey). Int. J. Geom. Method Mod. Phys. Vol. 19, Issue 1, January (2022), 2250013 (17 pages). https://doi.org/10.1142/s021988782250013X.
Constraints on the maximum mass of quark star and the GW 190814 event (Takol Tangphati, Indrani Karar, Anirudh Pradhan, Ayan Banerjee). Eur. Phys. J. C Vol. 82, Issue 1, January (2022), 57 (8 pages). https://doi.org/10.1140/epjc/s10052-022-10024-6.
Probing cosmic acceleration in κ(R, T ) gravity . (Nasr Ahmed, Anirudh Pradhan). Indian Journ. Phys. (INJP), Vol. 96, Issue 1, January (2022), 301-307. DOI: 10.1007/s12648-020-01948-4. arXiv: 2002.03798 v1 [gr-qc].
Personal, social, economic, and professional challenges faced by female radiation oncologists in South Asia (Biplab Sarkar, A. Munshi, T. Ganesh, Khushboo Rastogi, Kanika Bansal, A. Manikandan, B. K. Mohanti, Anirudh Pradhan). Clinical Oncology, Vol. 34, Issue 1, January (2022), e81-e82. https://doi.org/10.1016/j.clon.2021.11.001.
Evaluation of cosmological models in f (R, T ) gravity in different dark energy scenario (V. K. Bhardwaj, Anirudh Pradhan). New Astronomy. Vol. 91, Issue Feb (2022), Article 101675 (10 pages). https://doi.org/10.1016/j.newast.2021.101675.
Quark stars in f (R, T ) gravity with an interacting quark equation of state (Takol Tangphati, Sudan Hansraj, Ayan Banerjee, Anirudh Pradhan). Phys. Dark Univ. Vol. 35, Issue March (2022), Article 100990 (7 pages). https://doi.org/10.1016/j.dark.2022.100990.
Electrically Charged Quark Stars in 4D Einstein-Gauss-Bonnet Gravity (Juan M. Z. Pretel, Ayan Banerjee, Anirudh Pradhan). European Physical Journal C, Vol. 82, Issue 2 (2022), 180 (9 pages). https://doi.org/10.1140/epjc/s10052-022-10123-4. arXiv:2108.07454[gr-qc].
FRW cosmological models with Barrow holographic dark energy in Brans-Dicke theory (Anirudh Pradhan, V. K. Bhardwaj, P. Garg, Syamala Krishnannair ). Int. J. Geom. Method Mod. Phys. Vol. 19, Issue 07, June (2022), 2150106 (17 pages). DOI: 10.1142/S0219887822501067.
Barrow HDE model for Statefinder diagnostic in non-flat FRW universe (Archana Dixit, Vinod K. Bhardwaj, Anirudh Pradhan). Chinese J. Phys. Vol. 77, Issue June (2022), 646-657. https://doi.org/10.1016/j.cjph.2021.08.016. arXiv:2103.08339[gr-qc].
Roles of a periodic time varying deceleration parameter in Particle creation with (d + 2) dimensional FLRW Universe. (Priyanka Garg, Anirudh Pradhan, M. Zeyauddin). New Astronomy Vol.95, Issue Aug (2022), 101821 (10 pages. https://doi.org/10.1016/j.newast.2022.101821. arXiv:2103.03949v1[physicsgen-ph] 4 March 2021.
Dark energy dominated universe in Lyra geometry. (A. K. Yadav, G. K. Goswami, Anirudh Pradhan, S. K. Srivastava). Indian Jour. Phys. Vol. 96, Issue 5, April (2022), 1569-1575. https://doi.org/10.1007/s12648-021-02071-8.
Dosimetric comparison of constant dose rate Volumetric Modulated Arc Therapy (CDR-VMAT) and Intensity Modulated Radiation Therapy (IMRT) for Gallbladder Cancer. (Varsha Raghunathji Gedam, Anirudh Pradhan). Journal of Radiotherapy in Practice, Vol. 21, Issue 2 June (2022), 228-233. doi:10.1017/S1460396920001132.
Charged polytropic compact stars in 4D Einstein-Gauss-Bonnet gravity (Grigoris Panotopoulos, Anirudh Pradhan, Takol Tangphati, Ayan Banerjee). Chin. J. Phys. Vol. 77, Issue June (2022), 2106-2114. https://doi.org/10.1016/j.cjph.2022.01.008.
Challenges faced by female radiation oncologists (FRO) in South Asia (Biplab Sarkar, A. Munshi, T. Ganesh, P. Sarkar, Khushboo Rastogi, Kanika Bansal, A. Manikandan, B. K. Mohanti, Anirudh Pradhan). Bulletin du Cancer, Vol. 109, Issue 6, June (2022), 648-658. https://doi.org/10.1016/j.bulcan.2021.10.001.
Tidal effect in ADM formulation under the foliations of spacetime. (Indranath Bhattacharyya, Saibal Ray, Anirudh Pradhan). Chin. J. Phys. Vol. 77, Issue June (2022), 1765-1769. https://doi.org/10.1016/j.cjph.2022.02.006.
Growth characteristics of female radiation/clinical oncologists in South Asia: Assessment of gender neutrality and leadership position . (Biplab Sarkar, A. Munshi, T. Ganesh, A. Manikandan, B. Bhattacharjee, R. Pun, N. Imbulgoda, T. Yasmin, Anirudh Pradhan). Clinical Oncology, Vol. 34, Issue 10, October (2022), e437-e445. https://doi.org/10.1016/j.clon.2022.04.002.
Minimally deformed charged steller model by gravitational decoupling in 5D Einstein-Gauss-Bonnet gravity (S. K. Maurya, Ayan Benerjee, Anirudh Pradhan, Dhananjay Yadav). Europ. Phy. J. C Vol. 82, Issue 6, June (2022), 552 (14 pages). https://10.1140/epjc/s10052-022-10496-6.
Cosmic dynamics and qualitative study of Rastall model with spatial curvature ( Ashutosh Singh, G. P. Singh, Anirudh Pradhan). Int. J. Mod. Phys. A, Vol. 37, No. 16, June 10 (2022), 2250104 (19 pages). https://doi.org/10.1142/S0217751X22501044. arXiv:2205.13934v3[gr-qc].
LRS Bianchi type-I cosmological models with periodic time varying deceleration parameter and statefinder in f (R, T ) gravity (Anirudh Pradhan, Archana Dixit, Gunjan Varshney ). Int. J. Mod. Phys. A, Vol. 37, No. 18, June (2022), 2250121 (31 pages). https://doi.org/10.1142/S0217751X22501214.
Cancer care medical tourism in the national capital region of India Challenges for overseas patients treated in two private hospitals ( Biplab Sarkar, Anusheel Munshi, Khushboo Rastogi, Tharmarnadar Ganesh, Kanika Bansal, Arjunan Manikandan, Bidhu Kalyan Mohanti, Brijbhushan Tyagi, Sandeep Vaishya, Bhaswar Ghosh, Syamasis Bandyopadhyay, Anirudh Pradhan). Health Policy and Technology, Vol. 11, Issue 3, Sept (2022), 100659 (8 pages). https://doi.org/10.1016/j.hlpt.2022.100659.
Charged quark stars in f(R, T) gravity ( Juan M. Z. Pretel, Takol Tangphati, Ayan Banerjee, Anirudh Pradhan). Chin. Phys. C, Vol. 46, No. 11, (2022), 115103 (10 pages). DOI: 10.1088/1674-1137/ac84cb. arXiv:2207.12947v1[gr-qc].
The analysis of coplanar and non-coplanar intensity-Modulated radiother apy planning for esophageal cancer. (Sulabh Singh, Anirudh Pradhan). Int. J. of Health Sciences. Vol.6(S6) (2022) 9404-9413. https://doi.org/10.53730/ijhs.v6nS6.12525.
Sexual health and quality of life: Study on prostate cancer patients treated with modern 6MV X-ray radiation therapy (Dinesh Kumar, Anirudh Pradhan. Int. J. Health Sciences, Vol.6(S7) (2022) 4033-4042. https://doi.org/10.53730/ijhs.v6nS7.12709.
Phantom dark energy nature of bulk-viscosity universe in modified f(Q)-gravity. (A. Dixit, D. C. Maurya, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. Vol. 19, No. 12, (2022), 2250198(24 pages). https://doi.org/10.1142/S0219887822501985.
Corrected holographic dark energy with power-law entropy and Hubble Horizon cut-off in FRW Universe . (Vinod K. Bhardwaj, P. Garg, Anirudh Pradhan, Syamala Krishnannair). Chin. J. Phys. Vol 79, Issue October (2022), 471-480. https://doi.org/10.1016/j.cjph.2022.06.028.
A Comparative Dose-Escalation Analysis for the Head and Neck Reirradiation Patients with and without Appropriate DICOM Based Dose-Volume Information of Primary Radiotherapy. (B. Sarkar, T. Shahid, S. S. Biswal, K. Appunu, J. Bhattacharya, T. Ghosh, A. De, K. George, S. Mandal, S. Roy Chowdhury, T. Ganesh, A. Munshi, M. Mukherjee, A. Das, P. Soren, M. Arjunan, P. Chatterjee, L. N. Biswas, A. Pradhan). Int. J. Radiation Oncology-Biology-Physics Vol 114, Issue 3, Supplement, 1 November (2022), e444-e445. https://doi.org/10.1016/j.ijrobp.2022.07.1668.
The Mass-Radius relation for quark stars in energy-momentum squared gravity. (Takol Tangphati, Indrani Karar, Ayan Banerjee, Anirudh Pradhan). Ann. Phys. Vol 447, Issue Part 1, December (2022), 169149 (13 pages). https://doi.org/10.1016/j.aop.2022.169149. arXiv:2206.10371v2[gr-qc].
Cosmographic analysis of a closed bouncing universe with the varying cosmological constant in f(R, T) gravity. ( V. K. Bhardwaj, Anirudh Pradhan, N. Ahmed, A. A. Shaker ). Can. J. Phys. Vol 100, Issue 11, November (2022), 475-484. http://doi.org/10.1139/cjp-2021-0352. arXiv:2206.10113v1[gr-qc].
An axially symmetric transitioning models with observational constraints. (Vinod K. Bhardwaj, Archana Dixit, Rita Rani, G. K. Goswami, Anirudh Pradhan). Chinese J. Phys. Vol 80, Issue December (2022), 261-274. https://doi.org/10.1016/j.cjph.2022.09.007. arXiv:2204.04451[gr-qc].
R`enyi Holographic Dark Energy models in Teleparallel gravity (Vinod Kumar Bhardwaj, Archana Dixit, Anirudh Pradhan, Syamala Krishnannair). Int. J. Mod. Phys. A, Vol 37, Issue 28n29, 20 October (2022), 2250178 (20 pages). DOI:10.1142/S0217751X22501780. arXiv:2109.12963v2[gr-qc].
Cosmic acceleration and ekpyrotic bounce with Chameleon field. (Ashutosh Singh, Anirudh Pradhan). Int. J. Geom. Method Mod. Phys. Vol 19, No 13, November (2022), 2250216 (14 pages). https://doi.org/10.1142/S0219887822502164. arXiv:2207.11454[gr-qc].
Accretions of (m, n) type Pilgrim dark energies with logarithmic and power-law entropy corrections onto (D + 2)-dimensional black hole and worm-hole. (Jhumpa Bhadra, Ujjal Debnath, Anirudh Pradhan). Mod. Phys. Lett. A, Vol 37, No 26, 30 August (2022), 2250173 (16 pages). DOI: 10.1142/S0217732322501735.
Study of anisotropic universe in presence of DBI-essence, Phantom and Tachyonic fields. (Ujjal Debnath, Shuvendu Chakraborty, Sayani Maity, Anirudh Pradhan). Int. J. Mod. Phys. A, Published Online. (2022), 2250198 (26 pages). DOI:10.1142/S0217751X22501986.
Bulk viscous flat FLRW model with observational constraints in f(T, B) gravity. (Archana Dixit, Anirudh Pradhan). Universe, Vol. 8, Issue 12 (2022), 650 (17 pages).
Quintessence behaviour of an anisotropic bulk viscous cosmological model in modified f(Q)-gravity. (Anirudh Pradhan, Archana Dixit, D. C. Maurya). Symmetry, Vol 14, Issue 12 (2022), 2630 (17 pages). https://doi.org/10.3390/sym14122630. arXiv:2210.13730[gr-qc].
The necessity of scholarly footfall by social media platform. (Biplab Sarkar, Anirudh Pradhan). Cancer Research, Statistics, and Treatment (CRST), Vol 5, Issue 3 (2022), 405-407. 10.4103/crst.crst 205 22.
Barrow entropic quintessence and dilation dark energy models with generalized HDE cut-off. (P. Garg, V. K. Bhardwaj, Anirudh Pradhan). Int. J. Mod. Phys. A, Vol 37, Issue 36, 30 December (2022), 2250217 (16 pages). https://doi.org/10.1142/S0217751X22502177
Compatibility assessment of Varian and Elekta robotic couch assisted six-dimensional patient positioning correction systems with external independent imaging modalities (Biplab Sarkar, T. Ganesh, A. Munshi, A. Manikandan, S. Choudhari, K. Jassal, B. K. Mohanti, Anirudh Pradhan). Precision Radiation Oncology, Vol. 5, Issue 4, Dec (2021), 244-250. DOI: 10.1002/pro6.1136.
A new class of holographic dark energy models in LRS Bianchi Type-I (Anirudh Pradhan, Vinod Kumar Bhardwaj, Archana Dixit, Syamala Krishnannair). Int. J. Mod. Phys. A, Vol. 36, No. 36, December (2021), 2150256 (16 pages). DOI: 10.1142/S0217751X21502560. arXiv:2203.05699[gr-qc].
Color-flavor locked quark stars in energy momentum squared gravity. (Ksh. Newton Singh, A. Banerjee, S. K. Maurya, F. Rahaman, Anirudh Pradhan). Phys. Dark Univ. Vol. 31, Issue Jan. (2021), 100774 (6 pages). https://doi.org/10.1016/j.dark.2021.100774. arXiv:2007.00455 [gr-qc].
Sharma-Mittal holographic dark energy model in conharmonically flat space-time. (V. C. Dubey, U. K. Sharma, Anirudh Pradhan). Int. J. Geom. Method Mod. Phys. (IJGMMP). Vol. 18, No. 1, Jan. (2021), 2150002 (21 pages). DOI: 10.1142/S021988782150002X.
Compatibility between the scalar field models of tachyon, k-essence and quintessence in f (R, T ) gravity. (Vinod K. Bhardwaj, Anirudh Pradhan, Archana Dixit). New Astronomy, Vol. 83, Issue Feb. (2021) Article Number 101478. https://doi.org/10.1016/j.newast.2020.101478. arXiv:2011.07321[gr-qc].
Barrow HDE model for Statefinder diagnostic in FLRW Universe. ( (Anirudh Pradhan), Archana Dixit, V. K. Bhardwaj). Int. J. Mod. Phys. A, Vol. 36, Issue 04, 10 February (2021) 2150030 (13 pages). DOI:10.1142/S0217751X21500305. arXiv:2101.00176[gr-qc] 1 Jan 2021.
Traversable wormholes with lagarithmic shape function in f (R, T ) gravity. (Archana Dixit, Chanchal Chawla, Anirudh Pradhan). Int. J. Geom. Method Mod. Phys. (IJGMMP) Vol. 18 , No. 4, March (2021) 2150064 (32 pages). https://doi.org/10.1142/S021988782150064X. arXiv:2005.03985 V1 [physics.gen-ph].
Structural properties charged compact stars with color-flavour-locked quarks matter (M. K. Jasim, Anirudh Pradhan, Ayan Banerjee, T. Tangphati and G. Panotopoulos). Mod. Phys. Lett. A, Vol. 36, No. 32, 20 Oct (2021) 65 2150227 (22 pages). DOI: 10.1142/S0217732321502278. arXiv:2108.04630V1[gr-qc].
Anisotropic solution for compact star in 5D Einstein-Gauss-Bonnet gravity (S. K. Maurya, Anirudh Pradhan, Ayan Banerjee, F. Tello-Ortiz, M. K. Jasim). Mod. Phys. Lett. A, Vol. 36, No. 32, 20 Oct (2021) 2150231 (17 pages). DOI:10.1142/S021773232150231X.
Trnasit cosmological models coupled with zero-mass scalar field with high redshift in higher derivative theory. (Archana Dixit, D. C. Maurya, Anirudh Pradhan). New Astronomy, Vol. 87, Issue August (2021) 101587. https://doi.org/10.1016/j.newast.2021.101587, arXiv:2005.11139 v1[physics.gen-ph].
Statefinder hierarchy model for the Barrow holographic dark energy. (Vinod Kumar Bhardwaj, Archana Dixit, Anirudh Pradhan). New Astronomy, Vol. 88, October (2021) 101623 (9 pages). https://doi.org/10.1016/j.newast.2021.101623. arXiv:2102.09946[gr-qc].
A probe of cosmological models in modified teleparallel gravity. (Archana Dixit, Anirudh Pradhan, D. C. Maurya). Int. J. Geom. Method Mod. Phys. (IJGMMP) Vol. 18 , No. 13, November (2021) 2150208 (17 pages). DOI: 10.1142/S021988782150208X.
Reconstruction of tachyon, Dirac-Born-Infeld-essence and phantom model for Tsallis holographic dark energy in f (R, T ) gravity . (Gunjan Varshney, Umesh Kumar Sharma, Anirudh Pradhan, Narendra Mohan ). Chines J. Phys. Vol. 73, Issue October (2021) 56-73. https://doi.org/10.1016/j.cjph.2021.04.014.
Comparative study of transit FRW and axially symmetric cosmological models with domain walls in f(R,T)-gravity. (Umesh Kumar Sharma, Ambuj Kumar Mishra, Anirudh Pradhan). Canadian J. Phys. Vol. 99, No. 5 May, (2021) 378-386. https://doi.org/10.1139/cjp-2020-0343.
A new topological perspective of expanding space-times with applications to cosmology (Nasr Ahmed, Anirudh Pradhan, F. Salama). Int. J. Geom. Method Mod. Phys. (IJGMMP) Vol. 18 , No. 08, July (2021), 2150130. https://doi.org/10.1142/S0219887821501309. arXiv:2104.11602[physics.gen-ph].
Dark energy nature of viscous Universe in f (Q)-gravity with observational constraints. (Anirudh Pradhan, Dinesh Chandra Maurya, Archana Dixit). Int. J. Geom. Method Mod. Phys. Vol. 18 , No. 08, July (2021), 2150124 (20 pages). https://doi.org/10.1142/S0219887821501243.
Quark stars in the Einstein-Gauss-Bonnet theory: a new branch of stellar configurations (T. Tangphati, Anirudh Pradhan, A. Errehymy, A. Banerjee). Annals Phys. 430, Issue July (2021), 168498 (13 pages). https://doi.org/10.1016/j.aop.2021.168498
Anisotropic quark stars in Einstein-Gauss-Bonnet theory (Takol Tangphati, Anirudh Pradhan, Abdelghani Frrehymy, Ayan Banerjee). Phys. Lett. B, Vol. 819, Issue 10 August (2021) 136423. https://doi.org/10.1016/j.physletb.2021.136423.
Wormhole geometry in f (Q) gravity and the energy conditions ( Ayan Benerjee, Anirudh Pradhan, Takol Tangphati, Farook Rahaman). European Physical Journal C, Vol. 81, Issue 11, Nov (2021) 10131 (7 pages). https://doi.org/10.1140/epjc/s10052-021-09854-7. arXiv:2109.15105[gr-qc] 30 Set 2021.
A flat FLRW model with dynamic Λ as function of matter and geometry. (Anirudh Pradhan, De Avik, Tee How Loo, D. C. Maurya). New Astronomy, Vol. 89, Issue Nov (2021) 101637. https://doi.org/10.1016/j.newast.2021.101637. arXiV:2010.09444[physics.gen-ph] 5 Oct 2020.
Tsallis holographic dark energy model with observational constraints in the higher derivative theory of gravity. (Anirudh Pradhan, Archana Dixit). New Astronomy. Vol. 89, Issue Nov (2021) 101636. https://doi.org/10.1016/j.newast.2021.101636.
Modeling of traversable wormholes in exponential f(R, T) gravity. (Chanchal Chawla, Archana Dixit, (Anirudh Pradhan). Can. J. Phys. Vol. 99, Issue 8, August (2021) 634-645. https://doi.org/10.1139/cjp-2020-0556.
Particle creation in FLRW higher dimensional universe with gravitational and cosmological constants. (Archana Dixit, Priyanka Garg, Anirudh Pradhan). Can. J. Phys. Vol. 99, Issue 8, August (2021) 670-680. https://doi.org/10.1139/cjp-2020-0617.
FRW cosmological models with cosmological constant in f (R, T ) theory of gravity. (Anirudh Pradhan, Priyanka Garg and Archana Dixit). Cand. J. Phys. Vol. 99, Issue 9, September (2021) 741-753. https://doi.org/10.1139/cjp-2020-0282.
The scalar field models of Tsallis holographic dark energy with Granda-Oliveros cut-off in modified gravity. (Anirudh Pradhan, Gunjan Varshney, U. K. Sharma). Canad. J. Phys. Vol. 99, Issue 10, October (2021) 866-874. http://dx.doi.org/10.1139/cjp-2020-0605.
The model of the transit cosmology along with observational constrictions in f (Q, T ) gravity. (Anirudh Pradhan, Archana Dixit). Int. J. Geom. Method Mod. Phys. Vol. 18 , No. 10, Sept (2021), 2150159. https://doi.org/10.1142/S0219887821501590. arXiv:2009.08290v2[physics.gen-ph].
Anisotropic stars in 4D Einstein-Gauss-Bonnet gravity (Takol Tangphati, Anirudh Pradhan, Ayan Banerjee, G. Panotopoulos). Phys. Dark Univ. Vol. 33 , Issue 9, Sept (2021), 100877 (9 pages). DOI: 10.1016/j.dark.2021.100877. arXiv:2109.00195[gr-qc].
Minimally deformed anisotropic stars by gravitational decoupling in Einstein-Gauss-Bonnet gravity (S. K. Maurya, Anirudh Pradhan, F. Tello-Ortiz, Ayan Banerjee, Riju Nag). Europ. Phys. J. C, Vol. 81 , Issue 9, 25 Sept (2021), 848 (19 pages). https://doi.org/10.1140/epjc/s10052-021-09628-1.
The impact of radiation cataract in cancer patients with modern radio-therapy technique (Sulabh Singh, Anirudh Pradhan). JK-Practitioner, Vol 26, No 2, April-June (2021) 14 (5 pages).
Dosimetric consequences of FFF, FF & Photon Beam Energy on VMAT plan in prostate cancer (Dinesh Kumar, Anirudh Pradhan). JK-Practitioner, Vol 26, No 2, April-June (2021) 19 (7 pages).
Growth characteristics of woman radiation oncologists in South Asia: Assessment of gender neutrality and leadership position (Biplab Sarkar, A. Munshi, T. Shahid, S. Sengupta, R. Bhaskar, T. Ganesh, A. Paul, B. Bhattacharjee, R. Pun, N. Imbulgoda, S. S. Biswal, R. Rastogi, K. Bansal, A. Baba, T. Yasmin, J. Bhattacharya, T. Ghosh, A. Dey, P. Chatterjee, Anirudh Pradhan). Int. J. Radiation Oncology, Biology, Physics (IJROBP), Red Journal Website, 2691, Vol. 111 Issue 3, Supplement, Nov. 01, (2021) e339. DOI:https://doi.org/10.1016/j.ijrobp.2021.07.1027.
A comparative study of the dosimetric impact on IMRT planning with VMAT plans using a varying number of arcs in prostate cancer (Dinesh Kumar, Anirudh Pradhan, L. M. Singh). Journal of Physics: Conference Series, Vol. 2070 (2021) 012011 (8 pages). doi:10.1088/1742-6596/2070/1/012011. IOP Publisher.
Rotational positional error corrected linear set-up margin calculation technique for lung stereotactic body radiotherapy in a dual imaging environment of 4D-cone beam CT and ExacTrac stereoscopic imaging (Biplab Sarkar, T. Ganesh, A. Munshi, A. Manikandan, Soumya Roy, S. Krishnankutty , L. Chitral , J. Sathiya, Anirudh Pradhan, B. K. Mohanti). La Radiologia Medica, Vol. 126, Issue July (2021), 979-988. https://doi.org/10.1007/s11547-021-01355-7.
Cosmological models of generalized ghost pilgrim dark energy (GGPDE) in the gravitation theory of Saez-Ballester . (Priyanka Garg, Archana Dixit, Anirudh Pradhan). Int. J. Geom. Method Mod. Phys. Vol. 18, Issue 14, December (2021), 2150221 (23 pages). DOI: 10.1142/S0219887821502212. arXiv:2004.11153[physics.gen-ph] V1 6 April, 2020.
Determination of multileaf collimator positional errors as a function of dose rate, speed and delivery interruption for volumetric modulated arctherapy delivery (S. Roy, B. Sarkar, Anirudh Pradhan). J. Med. Phys. Vol. 46, Issue 4, Oct.-Dec. (2021), 286-294. DOI: 10.4103/jmp.JMP 18 21.
Anisotropic bulk viscous string cosmological models of the Universe under a time-dependent deceleration parameter. (Archana Dixit, R. Zia, Anirudh Pradhan). Pramana-J. Phys.,Vol. 94, No. 1, 9 Jan. (2020), 25 (11pages). DOI:10.1007/s12043-019-1884-2. arXiv:1906.05515v1[physics.gen-ph].
Domain walls and quark matter in Bianchi type-V universe with observational constraints in F(R, T)gravity. (D. C. Maurya, Anirudh Pradhan, Archana Dixit). Int. J. Geom. Method Mod. Phys. (IJGMMP), Vol. 17, No. 1, January (2020), 2050014 (21 pages). DOI:10.1142/S0219887820500140.
A dark energy quintessence model of the Universe. (G. K. Goswami, Anirudh Pradhan, A. Beesham). Mod. Phys. Lett. A, Vol. 35, Issue 04, 10 Feb (2020) 2050002. DOI: 10.1142/S0217732320500029.arXiv:1905.10801v1 [gr-qc].
Diagnosing interacting Tsallis holographic dark energy in the non-flat universe. (Umesh Kumar Sharma, V. C. Dubey,Anirudh Pradhan). Int.J. Geom. Method Mod. Phys. (IJGMMP),Vol. 17, No. 2, February(2020), 2050032 (22 pages). DOI:10.1142/S0219887820500322.arXiv:1906.08051[physics.gen-ph]
Traversable wormholes inf(R, T)gravity. (Ambuj Kumar Mishra, Umesh Kumar Sharma, Vipin Chandra Dubey, Anirudh Pradhan). Astrophys. Space Sci., Vol. 365, Issue 2, February (2020) Article Number 34(11 pages). https://doi.org/10.1007/s10509-020-3743-5. arXiv:1911.03232[physics.gen-ph].
Analytical model of dark energy stars. (A. Banerjee, M. K. Jasim, Anirudh Pradhan). Mod. Phys. Lett. A, Vol. 35, No. 10 March (2020), 2050071( 17 pages). DOI: 10.1142/S0217732320500716. arXiv:1911.09546 [gr-qc].
Two fluid scenario in Bianchi type-I Universe. (G. K. Goswami, Meena Mishra, A. K. Yadav, Anirudh Pradhan). Mod. Phys. Lett. A,Vol.35, No. 12 April (2020), 2050086 (14 pages). DOI:10.1142/S0217732320500868.arXiv:1907.11930[gr-qc].
A new class of holographic dark energy models in conharmonically flat space time. (Anirudh Pradhan, Vipin Chandra Dubey, Umesh Kumar Sharma). New Astronomy, Vol. 77, Issue May, (2020), Article Number 101360 (9 pages). https://doi.org/10.1016/j.newast.2020.101360.
Decelerating to accelerating scenario for Bianchi type-II string Universe in F(R, T). (Priyanka Garg, Anirudh Pradhan, Rasid Zia, Mohd. Zeyauddin). Int. J. Geom. Method Mod. Phys. (IJGMMP), Vol. 17, Issue 07June (2020), 2050108 (21 pages). DOI:10.1142/S021988782050108X.
An FLRW interacting dark energy model of the Universe. (Anirudh Pradhan, G. K. Goswami, A. Beesham, Archana Dixit). New Astronomy, Vol. 78, Issue 10 July (2020), Article Number 101368 (6 pages). https://doi.org/10.1016/j.newast.2020.101368. arXiv:2002.11486[physics.gen-ph].
Reconstructing the k essence and dilation field models of the THDE in f(R, T)gravity. (Gunjan Varshney, Umesh Kumar Sharma, Anirudh Pradhan). Europ. Phys. J. Plus,Vol. 135, Issue 03 July (2020) Article Number 541. https://doi.org/:10.1140/epjp/s13360-020-00548-9.256.
Crossing the phantom devide line in universal extra dimensions. (Nasr Ahmed, Anirudh Pradhan). New Astronomy, Vol. 80, Issue October(2020) Article Number 101406. https://doi.org/10.1016/j.newast.2020.101406,arXiv:1907.12968 V2 [gr-qc] 28 Dec 2019.
RHDE model in FRW Universe with two IR cut-offs with redshift parametrization. (Archana Dixit, Vinod K. Bhardwaj,Anirudh Pradhan). Europ. Phys. Journ. Plus, Vol. 135, Issue 10 (2020) Article Number 831. https://doi.org/10.1140/epjp/s13360-020-00850-6. arXiv:2010.10847[gr-qc].
Stability, dark energy parameterization and swampland aspect of Bianchi-VIh cosmological models with f(R, T)-gravity. (Archana Dixit, Anirudh Pradhan). Int. J. Geom. Method Mod. Phys. (IJGMMP), Vol. 17, No.14, December (2020) 2050213 (26 pages). doi: 10.1142/S0219887820502138.arXiv:2003.14242[physics.gen-ph].
Decelerating to accelerating FRW Universe with variable G and Λ in conharmonically flat space. (M. Goyal, R. K. Tiwari, Anirudh Pradhan). New Astronomy, Vol. 66, Issue January (2019), 79-87. https://doi.org/10.1016/j.newast.2018.08.003.
Transit cosmological model in FRW universe under the two fluid scenario. (P. Garg, R. Zia, A. Pradhan). Int. J. Geom. Method Mod. Phys. (IJGMMP), Vol. 16, No. 01, January (2019), 1950007 (18 pages). https://doi.org/10.1142/S0219887819500075.
Transit cosmological models with perfect fluid and heat flow in Saez-Ballester theory of gravitation. ( U. K. Sharma, R. Zia, Rashid Zia, Anirudh Pradhan). Journal of Astronomy & Astrophysics (JOAA), Vol. 40:2 Issue 1, February (2019). https://doi.org/10.1007/s12036-018-9571-0.
Anisotropic compact stars in the Buchdahl model: A comprehensive study. (S. K. Maurya, Ayan Banerjee, M. K. Jasim, J. Kumar, A. Prasad, Anirudh Pradhan). Phys. Rev. D, Vol. 99, 15 Feb (2019), 044029 (24 pages). arXiv: 1811.09890[gr-qc].
Bianchi type-V I0 dark energy universe supporting accelerated expansion of the Universe. ( Priyanka Garg, Rashid Zia,Anirudh Pradhan). Int.J. Innov. Tech. Expl. Engin.(IJITEE),Vol. 8, Issue 6, March (2019),1758-1764. https://www.ijitee.org/download/volume-8-issue-6/
New holographic dark energy in bianchi- III universe with k-essence . (Shikha Srivastava, Umesh Kumar Sharma, Anirudh Pradhan). New Astronomy, Vol. 68, Issue April (2019), 57-64. https://doi.org/10.1016/j.newast.2018.11.002.
Diagnosis Tsallis holographic dark energy models with statefinder and ω − ω ′ pair. (Umesh Kumar Sharma, Anirudh Pradhan). Mod. Phys. Lett. A, Vol. 33, No. 13, 30 April (2019), 1950101 (11 pages), https://doi.org/10.1142/S0217732319501013.
Stability of cosmological models in modified f(R, T)-gravity with Λ(T). (U. K. Sharma, R. Zia, Anirudh Pradhan, A. Beesham). Research in Astronomy & Astrophysics (RAA),Vol. 19, No. 4 (2019), 55 (14 pages).https://doi.org/10.1088/1674-4527/19/4/55
Estimation of the cosmological parameters of the dust filleduniverse: Asimple approach. (G. K. Goswami, Meena Mishra,Anirudh Pradhan).Iran. J. Sci. Technol. Transac. A: Sci.,Vol. 43, Issue 2, April (2019),653-661. https://doi.org/10.1007/s40995-018-0540-x
LRS Bianchi type-I cosmological models with accelerated expansion in f(R, T) gravity in presence of Λ(T). (Anirudh Pradhan, R. K. Tiwari, A. Beesham, Rashid Zia). Eur. Phys. J. Plus,Vol. 134, Issue 5, May (2019),229 (18 pages). DOI:10.1140/epjp/i2019-12583-4.
A comparative study of Kaluza-Klein models with magnetic field in Lyra manifold and general relativity. (Ambuj Kumar Mishra, Umesh Kumar Sharma, Anirudh Pradhan). New Astronomy, Vol. 70, July (2019),27-35. DOI:10.1016/j.newast.2019.02.003
Statefinder diagnosis for interacting Tsallis holographic dark energy models with ω−ω ′ pair. (Gunjan Varshney, Umesh Kumar Sharma, Anirudh Pradhan). New Astronomy, Vol. 70, July (2019), 36-42. https://doi.org/10.1016/j.newast.2019.02.00
Tsallis holographic dark energy in FRW universe with time varying deceleration parameter. (Archana Dixit, Umesh Kumar Sharma, Anirudh Pradhan). New Astronomy, Vol. 73, Issue July, (2019), 101281 (8pages). DOI:10.1016/j.newast.2019.101281.
FRW dark energy cosmological model with hybride expansion law. (G.K. Goswami, Anirudh Pradhan, Meena Mishra, A. Beesham). New Astronomy,Vol. 73, Issue July, (2019), 101284 (9 pages).DOI:10.1016/j.newast.2019.101284. arXiv:1907.02965v1 [gr-qc].
Rotational positional error corrected intrafraction set-up margin in stereotactic radiotherapy: A spatial assessment for coplanar and non-coplanargeometry. (Biplab Sarkar, A. Munshi, T. Ganesh, A. Manikandan, S. Krishnankutty, L. Chitral, Anirudh Pradhan, B. K. Mohanti). Medical Physics (IOMP), First published in Sep (2019). https://doi.org/10.1002/mp.13810
Tsallis HDE in Bianchi-I universe using hybrid expansion law with k-essence. (V. C. Dubey, Shikha Srivastava, Umesh Kumar Sharma, Anirudh Pradhan). Pramana-Jour. Phys.,Vol. 93, Issue 5, Nov. (2019), 78 (10pages). DOI:10.1007/s12043-019-1843-y.
Friedmann-Robertson-Walker accelerating Universe with interactive dark energy. (G. K. Goswami, Anirudh Pradhan, A. Beesham). Pramana-Jour. Phys.,Vol. 93, Issue 6, December (2019), 89. DOI:10.1007/s12043-019-1856-6. arXiv:1906.00450 v1[gr-qc].
Anisotropic MHRDE model in BD theory of gravitation. (Anirudh Pradhan, Archana Dixit, Shilpi Singhal). Int. J. Geom. Method Mod. Phys.(IJGMMP), (2019), 1950185(25 pages). DOI:10.1142/S0219887819501858.
Cosmology in modified f(R, T )-gravity theory in a variant Λ(T ) scenariorevisited.(Umesh Kumar Sharma, Anirudh Pradhan),. Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 15, (2018), 1850014 (27 pages), https://doi.org/10.1142/S0219887818500147
Teleparallel dark energy in a system of D0-brane. (Umesh Kumar Sharma, Alireza Sepehri, Anirudh Pradhan ), Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 15, (2018), 1850066 (19 pages), https://doi.org/10.1142/S0219887818500664.
Bianchi type-I dust filled accelerating Brans-Dicke cosmology. (Umesh Kumar Sharma, G. K. Goswami, Anirudh Pradhan). Gravitation & Cosmology, Vol. 24, No. 2, April (2018), 191-200, arXiv:1710.09269[physics.gen-ph].
Magnetized string cosmological models of accelerated expansion of the universe in f(R, T ) theory of gravity. (Anirudh Pradhan, Rekha Jaiswal). Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 15, (2018), 1850076 (24 pages), https://doi.org/10.1142/S0219887818500767
A low gradient junction technique of craniospinal irradiation using volumetricmodulated arc therapy and its advantages over the conventional therapy. (B. Sarakar, A. Munshi, A. Manikandan, S. Roy, T. Ganesh, B. K. Mohanti, A. Pradhan). Cancer/Radiotherapie, Volume 22, Issue 1, February 2018, Pages 62-72. https://doi.org/10.1016/j.canrad.2017.07.047.
Quarkonium in a thermal BIon. (Alireza Sepehri, Richard Pincak, Michal Hnatic, Farook Rahaman, Anirudh Pradhan). Canadian J. Phys. Vol. 96, No. 2 : pp. 127-147, https://doi.org/10.1139/cjp-2017-0049 , N R C Press. arXiv:1709.09537 [hep-th].
Transit dark energy string cosmological models with perfect fluid in f(R, T )- gravity. (Rashid Zia, D. C. Maurya, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 15, Issue June (2018), 1850168 (27 pages), https://doi.org/10.1142/S0219887818501682
Choice of appropriate beam model and gantry rotational angle for lowdose gradient-based craniospinal irradiation using volumetric-modulated arc therapy. (Biplab Sarkar, A. Pradhan). Journal of Radiotherapy in Practice, Vol. 16, No. 1, (March 2017), 53-64. http://dx.doi.org/10.1017/S146039691600042X .
Dark energy models in LRS Bianchi type-II space-time in the new perspective of time-dependent deceleration parameter. (Dinesh Chandra Maurya, Rashid Zia, A. Pradhan). Int. J. Geom. Meth. Mod. Phys. (IJGMMP), Vol. 14, No. 5 (May), (2017), 1750077 (18 pages). https://doi.org/10.1142/S0219887817500773 .
Cosmic space and Pauli exclusion principle in a system of M0-brane. (Salvatore Capozziello, Emmanuel N. Saridakis, Kazuharu Bamba, Alireza Sepehri, Farook Rahman, Ahmed Farag Ali, Richard Pincak, Anirudh Pradhan). Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 14, No. 6, (2017), 1750095 (32 pages). https://doi.org/10.1142/S0219887817500955 . aiXiv:1608.07683v1 [gr-qc].
The evolution of Brown-York quasilocal energy as due to evolution of Lovelock gravity in a system of M0-branes. ( Alireza Sepehri, Farook Rahaman, Salvatore Capozziello , Ahmed Farag Ali, Anirudh Pradhan). Int. J. Geom. Meth. Mod. Phys. (IJGMMP), Vol. 14, No. 7, (2017), 1750099 (28 pages). https://doi.org/10.1142/S0219887817500992 , arXiv: 1603.00350 [hep-th].
Left-sided breast radiotherapy after conservative surgery: comparison of techniques between volumetric modulated arc therapy, forward-planning intensity-modulated radiotherapy and conventional technique. (Upendra Kumar Giri, Biplab Sarkar, Kanan Jassal,Anusheel Munshi, Tharmar Ganesh, Bidhu Mohanti Anirudh Pradhan). Journal of Radiotherapy in Practice, Vol. 16, Issue 1 (March) (2017), 101-108. http://dx.doi.org/10.1017/S1460396916000509
Trajectory modulated arc therapy using quasi-continuous couch motion layered on top of volumetric modulated arc therapy in left breast and chest wall irradiation: a feasibility study. (Biplab Sarkar, A. Pradhan). Article: Jan 2017: Journal of Radiotherapy in Practice, Vol. 16, Issue 2, (2017), 133-140. http://dx.doi.org/10.1017/S1460396916000595.
Establishing inherent uncertainty in the shifts determined by volumetric imaging. (Upendra Kumar Giri, A. Pradhan). Journal of Radiotherapy in Practice, Vol. 16, Issue 3, Sep. (2017), 258-264. http://dx.doi.org/10.1017/S1460396917000218 .
Inherent uncertainty involved in six-dimensional shift determination in ExacTrac imaging system. (Upendra Kumar Giri, A. Pradhan). Journal of Radiotherapy in Practice, Vol. 16, Issue 4, Dec (2017), 409-414. http://dx.doi.org/10.1017/S1460396917000280.
The birth of GUP and its effect on the entropy of the universe in LieN-algebra. (Alireza Sepehri, Anirudh Pradhan, Richard Pincak, Farook Rahaman, A. Beesham, Tooraj Ghaffary). Int. J. Geom. Methods Mod. Phys. (IJGMMP), Vol. 14, (2017), 1750130 (29 pages), https://doi.org/10.1142/S0219887817501304 . arXiv:1705.11066 [physics.gen-ph].
Emergence of anti-F(R)-gravity in type-IV bouncing cosmology as due to M0-brane. (A. Sepehri, A. Pradhan, Richard Pincak, A. Beesham).. Cosmology & Gravitation, Vol. 23, Issue 3, (2017), 219-229.
On the origin of generalized uncertainty principle from compactified M5-brane. (A. Sepehri, A. Pradhan, A. Beesham). Modern Physics Letters A, 32, No. 24 (2017), 1750123(8 pages). https://doi.org/10.1142/S0217732317501231.arXiv:1706.04639[gr-qc].
Holographic diod. (A. Sepehri, Umesh Kumar Sharma, A. Pradhan,). Physics Letters A, Online 12 Sep (2017), http://dx.doi.org/10.1016/j.physleta.2017.09.005.
Transit cosmological models with domain walls in f(R, T ) gravity. (R. K. Tiwari, A. Beesham, Anirudh Pradhan). Cosmology & Gravitation, Vol. 23, Issue 4, (2017), 392 - 400
Dark energy models in f(R,T) theory with variable deceleration parameter. (R. K. Mishra, Avtar Chand, A. Pradhan). Int. J. Theor. Phys., Vol.55, No. 2, (2016), 1241-1256. DOI:10.1007/s10773-015-2766-0
Anisotropic String Cosmological Models in Heckmann-Suchuking Space- Time. (G. K. Goswami, A. K. Yadav, R. N. Dewangan, A. Pradhan). Astrophys. Space Sci., Vol. 361, No. 2, (2016), 47(10 pages). https://doi.org/10.1007/s10509-015-2629-4. arXiv:1601.06773 [gr-qc]
FRW cosmological models in Brans-Dicke theory of gravity with variable q and /\-term. (R. K. Mishra, Avtar Chand, A. Pradhan). Astrophys. Space Sci., Vol. 361, No. 2, (2016), 81(12 pages). https://doi.org/10.1007/s10509-015-2579-x .
F(R) bouncing cosmology with future singularity in brane-anti-brane system. (A. Sepehri, A. Pradhan, S. Shoorvazi). Astrophys. Space Sci., Vol. 361, No. 2, (2016), 58, (10 pages). https://doi.org/10.1007/s10509-016-2651-1.
Emergence and oscillation of cosmic space by joining M1-branes. (A. Sepehri, F. Rahaman, S. Capozziello, A. F. Ali, A. Pradhan). European Physical Journal C, Vol. 76, No. 5 ( May 2016), 231(12 pages). https://doi.org/10.1140/epjc/s10052-016-04084-y. arXiv:1604.02451 [gr-qc]
Do technical advances in linear accelerators improve dosimetric outcomes in stereotaxy? A head-on omparison of seven linear accelerators using volumetric modulated arc therapy-based stereotactic planning. (B. Sarkar, A. Pradhan, A. Munshi). Indian Jour. Cancer, Vol. 53, No. 1, (January - March), (2016) 166-173. https://doi.org/10.4103/0019-509X.180815.
Teleparrallel loop quantum cosmology in a system of intersecting branes. (A. Sepehri, A. Pradhan, A. Beesham, Jaume de Haro). Phys. Lett. B, Vol. 760, No. 10 (Sept 2016), 94-100. http://dx.doi.org/10.1016/j.physletb.2016.06.045. arXiv:1605.02590 [gr-qc]
Anisotropic string cosmological models in Brans-Dicke theory of gravitation with time-dependent deceleration parameter. (D. Ch. Maurya, R. Zia, A. Pradhan). J. Experim. Theor. Phys. (JETP), Vol. 123, No. 4, (2016), 617-622. http://dx.doi.org/10.1016/j.nrjag.2016.04.002
V cosmology models in F(R,T) modified gravity with /\(T) by using generation technique (Nasr Ahmed, Anirudh Pradhan, M. Fekry, Sultan Z. Alamri). NRIAG Journal of Astronomy and Geophysics, Vol. 5, (2016). 35-47. http://dx.doi.org/10.1016/j.nrjag.2016.04.002
SU-F-J-126: Influence of Six Dimensional Motions in Frameless Stereotactic Dosimetry Incorporating Rotational Shifts as Equivalent Translational Shifts: A Feasibility Study for Elekta-BrainLAB Stereotactic System. (B. Sarkar, A. Manikandan, K. Jassal, T. Ganesh, A. Munshi, B. Mohanti, A. Pradhan). Medical Physics, Vol. 43, Issue 6 Part 10, June (2016), 3436. https://doi.org/10.1118/1.4956034. The paper is also presented in 58th meeting of the American Association of Physicists in Medicine.
EP-1685: Influence of flat, flattening filter free beam model and different MLCs on VMAT based SRS/SRT. (B. Sarkar, A. Pradhan, A. Munshi, Shimul Roy, T. Ganesh, B. Mohanti, ). Radiotherapy and Oncology, Vol. 119, April (2016), S787.http://dx.doi.org/10.1016/S0167- 8140 (16)32936-X
Emergence and Expansion of Cosmic Space in BIonic system. (A. Sepehri, Farook Rahaman, Anirudh Pradhan, Iftikar Hossain Sardar), Phys. Lett. B, Vol. 744, Issue February, (2015),92-96, arXiv:1505.00428.gr-qc
Bianchi type-I cosmological models with time dependent gravitational and cosmological constants: an alternative approach (B. Saha, V. Rikhvitsky, A. Pradhan). Rom. J. Phy., Vol. 60, No.1-2, (2015), 3-14.
Accelerating dark energy models of the universe in anisotropic Bianchi type space-times and recent observations, (A. Pradhan, B. Saha). Phy. Parti. Nuclei, Vol. 46, No. 3, (2015), 310-346.
The whipped inflation in Blon system (A. Sepehri, A. Pradhan, S. Shoorvazi), Astrophys. Space Sci. Vol. 357, Issue1 (2015), 18(4 pages). https://doi.org/10.1007/s10509-015-2300-0.
Bianchi type-I transit cosmological models with time dependent gravitational and cosmological constants-reexamined (A. Pradhan, B. Saha, V. Rikhvitsky).Indian J. Phy. Vol. 89, No. 5, (2015), 503-513. https://doi.org/10.1007/s12648-014-0612-5. arXiv:1308.4842 [physics.gen-ph]
Bianchi type I cosmology with scalar and spinor techyon (A Sepehri, A. Pradhan, S. Shoorvazi). Int. J. Theor. Phys. Vol. 5ssue 5(2015), 1553-1566.https://doi.org/10.1007/s10773-014-2354-8.
Fluid sphere: stability problem and dimensional constraint
(F. Rahaman, A. Pradhan, N. Ahmed, S.Ray, B. Saha, M. Rahaman).
Int. J. Mod. Phys. D, Vol. 24, No. 7, (2015), 1550049 (14 pages), DOI:10.1142/S0218271815500492.
arXiv:1401.1402[gr-qc].
Reconstruction of modified f(R, T ) gravity with /\(T ) in general class of Bianchi cosmological models. (A. Pradhan, N. Ahmed, B. Saha). Can. J. Phys. Vol. 93, No. 6, 654-662 (2015). 10.1139/cjp-2014-0536.
Removing the big rip singularity from anisotropic universe in superstring theory. (A. Sepehri, A. Pradhan, H. Amirhashchi). Can. J. Phys.93, No. 11(2015), 1324-1329 https://doi.org/10.1139/cjp-2014-0651.
Unifying inflation and late-time acceleration in a BIonic system. (A. Sepehri, F. Rahaman, M. R. Setare, A. Pradhan, S. Capozziello, I. S. Sardar). Phys. Lett. B, Vol. 747, No. 30 July, (2015), 1-8. arXiv:1505.05105[gr-qc].
Redefing heat and work in the right perspective of second-law-of-thermodynamics (R. C. Gupta, A. Pradhan and Sushant Gupta). Infinite Energy, Issue 122 (July/August 2015). arXiv:0604174 [physics.gen-ph].
Derivative based sensitivity analysis of gamma index (B. Sarkar, A. Pradhan, T. Ganesh). Journal of Medical Physics, Vol. 40, No. 4 (2015), 240-245.
SU-E-T-583: Operated left breast and chest wall radiotherapy: A dosimetric comparison between 3DCRT, IMRT and VMAT (B. Sarkar, S. Roy, A. Munshi and A. Pradhan), Med. Phys., Vol. 42, (2015), 3470; http://dx.doi.org/10.1118/1.4924945.
Interracting and non-interacting two-fluid atmosphere for dark energy in FRW universe (H. Amirhashchi, D. S. Chouhan, A. Pradhan), Elect. J. Theor. Phys. Vol. 10, No. 30, (2014), 109-126.
Anisotropic Bianchi type-V cosmology with perfect fluid and heat flow in Saez-Ballester theory of gravitation. (A. Pradhan, A. K. Singh, D.S. Chouhan), Polestine J. Mathematics (PJM), Vol. 3 Issue 1, (2014), 130-140.
Two-fluid atmosphere from decelerating to accelerating FRW dark energy models (A. Pradhan). Indian J. Phys. (INJP), Vol. 88, Issue 2 (2014), 215 - 223. arXiv:1211.1882[physics.gen-ph].
Bianchi type-V cosmology in f(R, T) gravity with /\(t) (N. Ahmed, A. Pradhan), Int. J. Theor. Phys. Vol. 53, No. 1, (2014), 289-306. arXiv:1303.3000v1 [physics.gen-ph].
Viscous dark energy and phantom field in Bianchi type I spcae-time (H. Amirhashchi, A. Pradhan). Atrophys. Space Sci. Vol. 351, No.1, (2014), 59-65.arXiv:1401.5768 [astro-ph.CO].
A new class of accelerating cosmological models with variable G and /\ in SaeZ and Ballester Theory of Gravitation (C. Chawla, R. K. Mishra, A. Pradhan). Rom. J. Phy., Vol. 59, No. 1-2, (2014), 12-15.
Bianchi type-I transit cosmological models with time dependent gravitational and cosmological constants (A. Pradhan, A. K. Pandey, R. K. Mishra). Indian J. Phy.(IJP), Vol. 88, No.7, (2014), 757-765.
String cosmological models in cylindrically symmetric inhomogeneous universe with electromagnetic field (R. Bali, A. Pradhan and A. Rai). Prespacetunes J. vol. 5, Issue 7, (2014), 695-705. arXiv:0705.0904 [gr-qc]
Accelerating bulk viscous LRS Bianchi-II string cosmological models in Saez-Ballester theory of gravitation. (A. Pradhan, A. S. Dubey, R. K. Khare), Jour, Tensor Society, Vol. 8, (2014), 17-32.
Accelerating Bianchi type-V cosmology with perfect fluid and heat flow in Saez-Ballester theory. (A. Pradhan, A.K. Singh, D. S. Chouhan). Int. J. Theor. Phys. Vol. 52, No. 1, (2013), 266-278. DOI:10.1007/s10773-012-1329-x. arXiv:1204.5741 v1 [physics-gen.ph].
Bianchi type-I cosmological models with time dependent q and /\-term (A. Pradhan, Rekha Jaiswal, R.K. Khare). Astrophys. Space Sci. Vol. 343, Issue 1, (2013), 489-497. https://doi.org/10.1007/s10509-012-1239-7.
Interacting two-fluid viscous dark energy models in non-flat universe (H. Amirhashchi, A. Pradhan, H. Zainuddin). Res. Astron. Astrophy. (RAA), Vol. 13, (2013), 129-138, arXiv:1210.4637[astro-ph.CO]
Accelerating dark energy models with anisotropic fluid in Bianchi type-VIo space-time (A. Pradhan) Res. Astron. Astrophy. (RAA), Vol. 13, (2013), 139-158. arXiv:1209.4826[physics-gen-ph].
Generation of bulk viscous fluid massive string cosmological models with electromagnetic field in Bianchi type- VI0 space-time ( A. Pradhan, A. Singh, R. C. upadhyay). ARPN-Jour. Sci. Tech. Vol. 3, No. 1, (2013), 147 - 152.
Some Bianchi type-III bulk viscous massive string cosmological models with electromagnetic field. (A. Singh, R. C. Upadhyay, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No. 2, (2013), 146 - 152.
Accelerating bulk viscous FRW universe in a Scale-Covariant theory of gravitation (A. Pradhan, A. S. Dubey, R. K. Khare). Jour. Basic Appl. Phys. (JBAP), Vol. 2, Issue 1, (2013), 13-19.
Anisotropic viscous fluid cosmological models from decelerating to accelerating in string cosmology (R. K. Mishra, A. Pradhan, C. Chawla). Int. J. theor. Phys. Vol. 52, No. 8, (2013), 2546-2559. https://doi.org/10.1007/s10773-013-1540-4.
Two-Fluid dark energy modles in Bianchi type-III universe with variable deceleration parameter ( H. Amirhashchi, A. Pradhan, Rekha Jaiswal). Int. J. theor. Phys. Vol. 5 2, No. 8, (2013), 2735-2752. https://doi.org/10.1007/s10773-013-1566-7. arXive:1303.6276[astro-ph.CO].
Cosmological consequences with time dependent /\-term in Bianchi-I space-time (A. Pradhan, Rekha Jaiswal, R.K. Khare). Jour. Basic Appl. Phys. (JBAP), Vol. 2, Issue 2, (2013), 50-59.
Accelerating Bianchi type-I universe with time varying G and /\ (t)-term in general relativity ( A. Pradhan, L. S. Yadav, L.J. Yadav). ARPN-JST, Vol. 13, No.4 (2013), 422-429.
Viscous fluid cosmology with time dependent q and /\ -term in Bianchi type-I space-time and late time acceleration (A. Pradhan, R. Zia, R. P. Singh). Indian J. Phys. (INJP), Vol. 87, No. 11 (2013), 1157 - 1167. https://doi.org/10.1007/s12648-013-0342-0.
Anisotropic Bianchi type-V cosmology with perfect fluid and heat flow in Saez-Ballester theory of gravitation with variable deceleration parameter. (A. S. Dubey, R. K. Khare, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No.6 (2013), 669-674.
Bianchi type-I cosmological models with viscosity and cosmological term in general relativity (P. Yadav, S. A. Faruqui, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No.7, (2013), 702-712.
A new class of Bianchi type-I cosmological models with viscosity and cosmological term (L. J. Yadav, L. S. Yadav, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No.8, (2013), 839-849.
Cosmological consequences with time dependent /\-term in Bianchi type-I space-time-revisited (A. K. Pandey, R. K. Mishra, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No.9, (2013), 908-914.
Anisotropic Bianchi type-I cosmological models in string cosmology with variable deceleration parameter (Chanchal Chawla, R. K. Mishra, A. Pradhan), Rom. J. Phy. Vol. 58, No. 7-8, (2013), 1000-1013. arXiv:1203.4014 v1 [physics-gen-ph].
Magnetized inhomogeneous universe with variable magnetic permeability and cosmological constant (P. Yadav, S. A. Faruqi, Pratima Singh, A. Pradhan). ARPN-Jour. Sci. Tech. Vol. 3, No.12, (2013).
Bulk Viscous LRS Bianchi-I universe with variable G and /\ (A. K. Yadav, A. Pradhan, Ajay K. Singh). Astrophys. Space Sci. Vol. 337, No. 1, (2012), 379-385. DOI:10.1007/s10509-011-0814-7. arXiv:1106.0416{physics.gen-ph].
Bianchi type-VIo dark energy models with time dependent deceleration parameter ( A. Pradhan, K. Jotania, Rekha Jaiswal and R. K. Khare). Astrophys. Space. Sci., Vol. 337, No. 1, (2012), 401-413. https://doi.org/10.1007/s10509-011-0835-2.
A novel concept for mass as complex-mass towards wave-particle duality . (R. C. Gupta, A. Pradhan and Sushant Gupta). Infine Energy, USA. Issue 101, (January/February), (2012). arXiv:1001.4647[physics.gen-ph].
Bianchi type-II string cosmological models in normal gauge for Lyra's manifold with constant deceleration parameter (S.Agarwal, R. K. Pandey and A. Pradhan). Ind. J. Phys., Vol. 86, Issue 1, (2012), 61 - 70.https://doi.org/10.1007/s12648-012-0005-6. arXiv:1010.1947 [physics.gen-ph].
A new class of LRS Bianchi type VIo universes with free gravitational field and decaying vacuum energy density. ( A. Pradhan, S. S. Kumhar, P. Yadav and K. Jotania). Int. J. Math. Eng. Sci. (IJMES), Vol. 1, Issue 2, (2012), 74 - 89. arXiv:0907.4851 [gr-qc].
Two-Fluid scenario for dark energy models in an FRW universe-revisited. (B. Saha, H. Amirhaschchi and A. Pradhan). Astrophys. Space. Sci., (2012). https://doi.org/10.1007/s10509-012-01155-x. arXiv:1108.2133 [gr-qc].
A new class of Bianchi type-I cosmological models in scalar-tensor theory of gravitation and late time acceleration (A. Pradhan, A.K. Singh, H. Amirhashchi). Int. J. Theor. Phys. (2012). DOI:10.1007/s10773-012-1262-z. arXiv:1201.5173 [physics-gen.ph].
Viscous fluid cosmological models in Bianchi type-I space-time (A. Pradhan, R. Zia, R. P. Singh). ARPN Jour. Sci. Techn. Vol. 2, Issue 4, (2012), 381-387.
Bianchi type-III cosmological model with variable G and /\-term in general relativity (H. Amirhashchi, H. Zainuddin and A. Pradhan). Rom. J. Phys. Vol. 57, Issue 3-4, (2012), 748-760.
Anisotropic Bianchi type-I massive string cosmological models in general relativity (A. Pradhan, S. S. Kumhar and K. Jotania). Polestine J. Mathematics (PJM), Vol. 1(2), (2012), 118-132.
Some exact Bianchi type-I cosmological models in a scalar-tensor theory of gravitation with time dependent deceleration parameter (A. Pradhan, A. S. Dubey and R. K. Khare). Rom. J. Phys. Vol. 57, No. 7-8, (2012), 1222-1235.
Anisotropic Bianchi type-III string cosmological models in normal gauge for Lyra's manifold with electromagnetic field (A. Pradhan, R. Zia, H. Amirhashchi) Bulg. J. Phys. Vol. 39, No. 3, (2012), 248-269.
Accelerating dark energy models in Bianchi type-V space-time with variable deceleration parameter-revisited (A. Pradhan, H. Amirhashchi, H. Zainuddin). Elect. J. Theor. Phys. (EJTP), Vol. 9, No. 27, (2012), 159-176.
Physical spin modeling of fermions and photons based on complex-mass concept (R. C. Gupta, A. Pradhan and Sushant Gupta). Infinite Energy, Issue 105 (Sept./Oct.) (2012), 49-55.
String cosmological models from early deceleration to current acceleration phase with varying G and /\ (C. Chawla, R. K. Misra, A. Pradhan). Eur. Phy. J. Plus (EPJP), Vol. 127, (2012), 137 (16 pages).
Bianchi-I massive string cosmological models in general relativity (A. Pradhan, D. S. Chauhan, R. S. Singh). ARPN-JST, Vol. 2, No. 9, (2012), 870-877.
Magnetized Bianchi type VIo bulk viscous barotropic massive string universe with decaying vacuum energy density /\ (A. Pradhan and Suman Lata). Elect. J. Theor. Phys. Vol. 7, No. 25, (2011), 153-168.
A new class of inhomogeneous cosmological models with electromagnetic field in normal gauge for Lyra's manifold. (A. Pradhan, H. Amirhashchi and H. Zainuddin). Int. J. Theor. Phys., Vol. 50, Issue 1, (2011), 56-69. DOI. 10.1007/s10773-010-0493-0.
LRS Bianchi type II perfect fluid cosmological models in normal gauge for Lyra's manifold (Shilpi Agarwal, R. K. Pandey and A. Pradhan). Int. J. Theor. Phys., Vol. 50, Issue 1, (2011). 296-307. DOI.10.1007/s10773-010-0532-y.
LRS Bianchi type-II massive string cosmological model in general relativity (A. Pradhan, P. Ram and Rekha Singh). Astrophys. Space Sci., Vol. 50, No. 1, (2011), 275-279. DOI.10.1007/s10509-010-0423-x.
Exact solution of perfect fluid massive string cosmology in Bianchi type-III space-time with decaying vacuum energy density /\ ( A. Pradhan, H. Amirhashchi and H. Zainuddin). Astrophys. Space Sci., Vol. 331, No. 2, (2011), 679-687. DOI:10.1007/s10509-010-0469-9.
Anisotropic Bianchi type-I models in string cosmology (A. Pradhan and D.S. Chouhan). Astrophys. Space Sci. Vol. 331, No. 2, (2011), 697-704. DOI:10.1007/s10509-010-0478-8.
A plane symmetric magnetized in homogeneous cosmological model of perfect fluid distribution with variable magnetic permeability. ( A. Pradhan, Archana Sing and R. S. Singh), Rom. J. Phys., 56, No. 1 - 2 (2011), 297-307.
Anisotropic Bianchi type-I string cosmological models in normal gauge for Lyra's manifold with constant deceleration parameter. (A. Pradhan and Ajay Kumar Singh). Int. J. Theor. Phys., Vol. 50, No. 3, (2011), 916-933. DOI. 10.1007/s10773-010-0636-3.
An interacting two-fluid scenario for dark energy in FRW universe (H. Amirhashchi, A. Pradhan and B. Saha). Chin. Phys. Lett., Vol. 28, No. 3, (2011), 039801-04. DOI.10.1089/0256-307X/28/3/039801.arXiv:1011.3940[gr-qc].
Dark energy models in anisotropic Bianchi type-III space-time with variable EoS parameter (A. Pradhan and H. Amirhashchi). Astrophys. Space Sci., Vol. 332, No. 2, (2011), 441-448. DOI:10.1007/s10509-010-0539-z. arXiv:1010.2362 [physics.gen-ph].
Variable equation of state for Bianchi type-VI0 dark energy models (H. Amirhashchi, A. Pradhan and B. Saha). Astrophys. Space Sci., Vol. 333, No. 1, (2011), 295-303. DOI:10.1007/s10509-010-0577-6.
A theoretical-explained new-variant of Modified-Newtonian-Dynamics (MOND) (R. C. Gupta and A. Pradhan). Astrophys. Space Sci., Vol. 333, No. 1, (2011), 311-316. DOI:10.1007/s10509-011-0605-1. arXiv:1009.3842 [physics.gen-ph]
An interacting and non-interacting two-fluid scenario for dark energy in FRW universe with constant deceleration parameter (A. Pradhan, H. Amirhashchi and B. Saha). Astrophys. Space Sci. Vol. 333, No. 1, (2011), 343-350. DOI:10.1007/s10509-011-0626-9.
A new class of LRS Bianchi type I perfect fluid universes with decaying vacuum energy density /\ (A. Pradhan and K. Jotania). Ind. J. Phys. (INJP), Vol. 85, No. 3, (2011), 497-514. DOI: 1-1007/s12648-011-0052-4.
Anisotropic Bianchi type-I magnetized string cosmological models with decaying vacuum energy density /\. (A. Pradhan). Commun. Theor. Phys.Vol. 55, No. 5, (2011), 931-941.
Magnetized Bianchi type-III string universe with decaying vacuum energy density. (H. Amirhashchi, H. Zainuddin and A. Pradhan) Int. J. Theor. Phys. Vol. 50, No. 8, (2011), 2531-2554. DOI:10.1007/s10773-010-0744-8.
Bianchi type-I anisotropic dark energy models with constant deceleration parameter (A. Pradhan, H. Amirhashchi and B. Saha).Int. J. Theor. Phys. Vol. 50, No. 9, (2011), 2923-2938. DOI:10.1007/s10773-010-0793-z.arXiv:1010.1121[gr-qc].
A new class of LRS Bianchi type-II dark energy models with variable EoS parameter (A. Pradhan, H. Amirhashchi and Rekha Jaiswal). Astrophys. Space Sci. Vol. 334, No. 2, (2011), 231-236. https://doi.org/10.1007/s10509-011-0722-x.
An interacting and non-interacting tow-fluid dark energy models in FRW universe with time dependent deceleration parameter. ( H. Amirhashichi, A. Pradhan and H. Zainuddin). Int. J. Theor. Phys. Vol. 55, No. 11, (2011), 3529-3543. https://doi.org/10.1007/s10773-011-0861-4.
LRS Bianchi type-II massive string cosmological models in general relativity-revisited (A. K. Yadav, A. Pradhan and Archana Singh). Rom. J. Phys., Vol. 56, No. 7-8,(2011), 1019-1034.arXiv: 1102.10777[physics.gen-ph].
Accelerating dark energy models in Bianchi type-V space-time (A. Pradhan and H. Amirhashchi). Mod. Phys. Lett. A, Vol. 26, No. 30, (2011), 2261-2275. https://doi.org/10.1142/S0217732311036620. arXiv:1110.1019[physics.gen-ph].
Genesis of dark energy: Dark energy as consequences of release and two-stage tracking of cosmological nuclear energy (R. C. Gupta and A. Pradhan). Int. J. Theor. Phys. Vol. 49, Issue 4, (2010), 821 - 834. DOI.10.1007/s10773-010-0261-1;arXiv:0903.3636v2 [physics.gen-ph]
Cylindrically symmetric inhomogeneous string cosmological models of perfect fluid distribution with electromagnetic field (A. Pradhan, Rekha Singh and J. P. Shahi). EJTP, Vol. 7, No. 23, (2010), 197-212
A plane-symmetric inhomogeneous cosmological model of perfect fluid distribution with variable electromagnetic field I (A. Pradhan, P. K. Singh and A. K. Yadav). Commun. Theor. Phys., Vol. 54, No 1, (2010), 191 - 196. https://doi.org/10.1088/0253-6102/56/1/35; (gr-qc/0705.4411).
Some exact Bianchi type- V perfect fluid cosmological models with heat flow and decaying vacuum energy density /\: expressions for some observable quantities (A. Pradhan and K. Jotania). Int. J. Theor. Phys., Vol. 49, Issue 8, (2010), 1719 - 1738. https://doi.org/10.1007/s10773/s10773010-352-z
Some exact Bianchi type- V cosmological models in scalar tensor theory: Kinematic Tests. (A. Pradhan and Sheel Kumar Singh). Elect. J. Theor. Phys., Vol. 7, No. 24, (2010), 407-424.
Massive string cosmology in Bianchi type-III space-time with electromagnetic field. (A.Pradhan, Suman Lata and A. Amirhashchi). Commun. Theor. Phys. Vol. 54, No. 5, (2010), 950-956.
Anisotropic Bianchi type-I massive in string cosmological models in general relativity. (A. Pradhan). Proceeding of Petrov 2010 Anniversary Symposium on General Relativity and Gravitation, (2010), 212-219 held at Kazan State University, Kazan, Russia.
Dark constituents(s) of universe (A. Pradhan and R. C. Gupta). MATHDIGEST, UPM, Malaysia (2010).
Some magnetized bulk viscous string cosmological models in cylindrically symmetric inhomogeneous universe with variable /\-term (A. Pradhan) Commun. Theoret. Phy., Vol. 51, No 2, (2009), 367 - 374.
Thick domain walls with bulk viscosity (A. Pradhan). Commun. Theoret. Phy., Vol. 51, No 2, (2009), 378 - 384.
Cylindrically symmetric viscous fluid universe in Lyra geometry (A. Pradhan). Jour. Math. Phys., Vol. 50, Issue 2, (2009), 022501 - 022513.
LRS Bianchi type I universe in Barber's second self creation theory (A. Pradhan, Shilpi Agarwal and G.P. Singh). Int. J. Theor Phys., Vol. 48, No. 1, (2009), 158 - 166.
String cosmology with magnetic field in cylindrically symmetric spacetime- revisited (A. Pradhan, Shilpi Agarwal and A. K. Yadav). Rom. J. Phys., Vol. 54, No. 1-2, (2009), 15 - 28.
Plane symmetric inhomogeneous perfect fluid universe with electromagnetic field in Lyra geometry (A. Pradhan and S.S. Kumhar). Astrophys. Space Sci. Vol. 321, No. 2, (2009), 137 - 146.
LRS Bianchi type II bulk viscous fluid universe with decaying vacuum energy density /\ (A. Pradhan and S. S. Kumhar). Int. J. Theor. Phys., Vol. 48, No. 5, (2009), 1466 - 1477.
Bianchi type V universe with bulk viscosity in General Relativity (A. Pradhan, Vandana Rai and R. S. Singh). Rom. Rep. Phys., Vol. 61, No. 1, (2009), 27 - 42.
LRS Bianchi type II string cosmological models for perfect fluid distribution in General Relativity (A. Pradhan, Hassan Amirhashchi, M. K. Yadav). Fizika B, Vol. 18, No. 1, (2009), 35 - 42.
Inhomogeneous perfect fluid universe with electromagnetic filed in Lyra geometry (A. Pradhan and Priya Mathur). Fizika B, Vol. 18, No. 4, (2009), 243 - 264.
Plane symmetric viscous fluid universe with decaying vacuum energy density /\ (A. Pradhan). Fizika B, Vol. 18, No. 2, (2009), 61 - 80.
String cosmological models in cylindrically symmetric inhomogeneous universe (A. Pradhan, M. K. Mishra and A. K. Yadav). Rom. J. Phys., Vol. 54, No. 7-8, (2009), 747 - 762. arXiv:0705.3623
A new class of LRS Bianchi type - I cosmological models in Lyra's manifold (A. Pradhan and D. S. Chauhan ). JRAPS, Vol. 8, No. 2, (2009), 179 - 190. arXiv:gr-qc/0608056
A plane symmetric magnetized inhomogeneous cosmological models of perfect fluid distribution with variable magnetic permeability in Lyra geometry (A. Pradhan and P. Ram). Int. J. Theor. Phys., Vol. 48, No. 11, (2009), 3188 - 3201.
LRS Bianchi type II cosmological models for bulk viscous fluid distribution in General Relativity (A. Pradhan and Sheel Kumal Singh). JRAPS, Vol. 8, No. 3, (2009), 349 - 360.
Accelerated Lyra's cosmology driven by electromagnetic field in inhomogeneous universe (A. Pradhan and Padmini Yadav). Int. J. Mathematics & Mathematical Sci. (IJMMS), Vol. 2009, Article ID 471938, 1-20. https://doi.org/10.1155/2009/471938.
Magnetized string cosmological model in cylindrically symmetric inhomogeneous universe with time dependent cosmological-term /\ (A. Pradhan, Kanti Jotania and Archana Singh). Braz. J. Phys., Vol. 38, No. 1, (2008), 167 - 177.
Can Bianchi type-II cosmological models with a decay law for /\ term be compatible with recent observations ? (A. Pradhan, Deepak Srivastava and G. S. Khadekar) Roman. Rep. Phys., Vol. 60, No. 1, (2008), 3 - 12.
Inhomogeneous bulk viscous fluid universe with electromagnetic field and variable /\-term (A. Pradhan, Vandana Rai and Kanti Jotania) Commun. Theoret. Phys. Vol. 50, No.1, (2008)., 279 - 288.(gr-qc/0807.4230).
Bianchi type - I cosmological models with variable G and Lambda-term in General Relativity (J. P. Singh, A. Pradhan and Ajay Kumar Singh), Astrophys. Space Sci. Vol. 314, No. 1 - 3, (2008), 83 - 88. arXiv:0705.0459 [gr-qc]
Plane symmetric inhomogeneous cosmological models with a perfect fluid in General Relativity II (A. Pradhan and Anju Rai) Astrophys. Space Sci. Vol. 314, No. 1 - 3, (2008), 225 - 229.
A new class of higher dimensional cosmological models of universe with variable G and /\-term (G. P. Singh, S. Kotambkar, Deepak Srivastava and A. Pradhan). Roman. J. Phys., Vol. 53 No. 3-4, (2008), 607 - 618.
Bianchi type VIo magnetized barotropic bulk viscous fluid massive string universe in General Relativity (Raj Bali, A. Pradhan and Hassan Amirhashchi) Int. J. Theor Phys. Vol. 47, No. 10, (2008), 607 - 618.
Cylindrically symmetric inhomogeneous universe with electromagnetic field in string cosmology II (A. Pradhan, Anju Rai and Sheel K. Singh) Rom. J. Phys., Vol. 53, No. 7-8, (2008), 897 - 908.
Kaluza-Klein type Friedmann-Robertson Walker cosmological models with dyanamical cosmological term /\ (A. Pradhan, G. S. Khadekar, Vrishali Patki and Saeed Otarod) .Int. J. Theor. Phys., Vol. 47, (2008), 1751 - 1763. arXiv: gr-qc/0508089
String Cosmological Model in cylindrically symmetric inhomogeneous universe with electromagnetic field (A. Pradhan, Sunil Kumar Singh and Lal Ji Singh Yadav). Roman. Rep. Phys, Vol. 60, No. 4, (2008), 1013 - 1034. arXiv: gr-qc/0705.3623
A New class of Bianchi type I viscous fluid universe with a time dependent cosmological term (A. Pradhan, Anju Rai and S. Otarod). Fizika B (Zagrab), Vol. 17, No. 3, (2008), 393 - 404.
Magnetized Bianchi type VIo barotropic massive string universe with decaying vacuum energy density /\ (A. Pradhan and R. Bali). Elect. J. Theor. Phys.(EJTP), Vol.5, No. 19, (2008), 91 - 104.
Magnetized string cosmological model in cylindrically symmetric inhomogeneous universe revisited ( A. Pradhan and Priya Mathur). Astrophys. Space Sci. Vol. 318, No. 3 - 4, (2008), 255 - 261.
Early viscous universe with variable gravitational and cosmological 'constants' (C. P. Singh, Suresh Kumar and A. Pradhan) Class. Quantum Grav., Vol. 24, No. 2, (2007), 55-474.
Bianchi type III string cosmological models with time dependent bulk viscosity (R. Bali and A. Pradhan) Chinese Phys. Lett., Vol. 24, No. 2 (2007), 585-588. arXiv: gr-qc/0611018.
F R W universe with variable G and /\-terms (A. Pradhan, A. K. Singh and S. Otarod) Roman. J. Phys., Vol. 52, No. 3-4, (2007), 415-429. arXiv: gr-qc/0608107.
Plane symmetric inhomogeneous cosmological models with a perfect fluid in general relativity (A. Pradhan, Purnima Pandey and Sunil K. Singh) Int. J. Theor. Phys., Vol. 46, No. 6, (2007), 1584-1596. arXiv: gr-qc/0610125.
Five dimensional universe model with variable cosmological term Lambda and Big Bounce (G. S. Khadekar, V. Kamdi, A. Pradhan and S. Otarod) Astrophys. Space Sci., 310, No. 1-2, (2007), 141-147.
Bianchi Type I massive string magnetized barotropic perfect fluid cosmological model in General Relativity (Raj Bali, U. K. Pareek and A. Pradhan) Chin. Phys. Lett., Vol. 24, No. 8, (2007), 2455-2458. arXiv: gr-qc/0704.0753.
Plane symmetric bulk viscous domain wall in Lyra geometry (A. Pradhan, K. K. Rai and A. K. Yadav) Braz. J. Phys., Vol. 37, No. 3B, (2007), 1084-1093.
Some Bianchi type III string cosmological models with bulk viscosity (M. K. Yadav, Anju Rai and A. Pradhan) Int. J. Theor. Phys.,Vol. 46, No.11, (2007), 2677-2687.
Plane symmetric viscous fluid models with varying /\-term (A. Pradhan, P. Pandey, K. Jotania and M. K. Yadav) Int. J. Theor. Phys., Vol. 46, No. 11, (2007), 2774-2787.
Tilted Bianchi type V bulk viscous cosmological models with varying /\-term (A. Pradhan and S. K. Srivatav) Roman. Rep. Phys., Vol. 59, No.3, (2007), 749-762.
Higher dimensional strange quark matter coupled to the string cloud with electromagnetic field admitting on parameter group of conformal motion (A. Pradhan, G. S. Khadekar, M. Mishra and S. Kumbhare). Chin. Phys. Lett., Vol. 24, No. 10, (2007), 3013-3015.
Magnetized anisotropic bulk viscous cosmological models with a variable /\-term (A. Pradhan, Saeed Otarod and Sheel K. Singh). Chines J. Physics, Vol. 45, No. 5, (2007), 504-517.
A new class of bulk viscous universe with time dependent deceleration parameter and /\-term (A. Pradhan and Saeed Otarod). Astrophys. Space Sci., Vol. 311, No. 4, (2007), 413 - 421.
Some magnetized bulk viscous string cosmological models in general relativity (M. K. Yadav, A. Pradhan and Sheel K. Singh). Astrophys. Space Sci., Vol. 311, No. 4, (2007), 423-437. arXiv: gr-qc/0708.3298).
Bulk viscous cosmological models in general relativity (A. Pradhan, Vandana Rai and R. S. Singh). Fizika B" (Zagreb), Vol. 16, No. 2, (2007), 99 - 112. arXiv: gr-qc/0512155.
A new class of inhomogeneous string cosmological models in General Relativity (A. Pradhan, A. K. Yadav, R. P. Singh and Vipin Kumar Singh). Astrophys. Space Sci., Vol. 312, No. 3-4, (2007), 145 - 150. arXiv: gr-qc/0705.3619.
Cylindrically symmetric inhomogeneous universe with electromagnetic field in string cosmology (A. Pradhan, Anju Rai and Sheel K. Singh). Astrophys. Space Sci, Vol. 312, No. 3-4, (2007), 261 - 265. arXiv: gr-qc/0704.0849.
Inhomogeneous perfect fluid universe with electromagnetic field (A. Pradhan, Vineet K. Yadav, L. Yadav and A. K. Yadav). Astrophys. Space Sci., Vol. 312, No, 3 -4, (2007), 267 - 273.
Nonsingular cosmological models with a variable cosmological term (A. Pradhan, Kashika Srivastav and A. L. Ahuza). Fizika B (Zagreb) Vol. 16, No. 3, (2007), 141 - 158. arXiv: gr-qc/0408057
A new class of plane-symmetric inhomogeneous cosmological models of perfect fluid distribution with electromagnetic field (A. Pradhan, A. K. Yadav and J. P. Singh). Fizika B (Zagreb), Vol. 16, No. 4, (2007), 175 - 196.
Magnetized string cosmological model in cylindrically symmetric inhomogeneous universe with variable cosmological-term /\ (A. Pradhan) Fizika B (Zagreb), Vol. 16 No. 4, (2007), 205 - 222. arXiv: gr-qc/0708.0107.
Some Bianchi type I viscous fluid cosmological models with a variable cosmological constant (A. Pradhan and Purnima Pandey) Astrophys. Space Sci. Vol. 301, No. 1-4, (2006), 127-134. arXiv: gr-qc/0407112.
Magnetized anisotropic cosmological models with varying /\ (A. Pradhan, Purnima Pandey and K. K. Rai), Czech. J. Phys. Vol. 56, Issue March, (2006), 303-314.
Higher dimensional dust cosmological implications of a decay law for a /\ term: expressions for some observable quantities (G. S. Khadekar, A. Pradhan and M. R. Molaei) Int. Jour. Mod. Phys. D, Vol. 15, No. 1, (2006), 95-105. arXiv: gr-qc/0509074.
Cylindrically symmetric inhomogeneous cosmological models with viscous fluid and varying /\ (A. Pradhan, P. K. Singh and K. R. Jotania) Czech. J. Phys., Vol. 56, (2006), 641-660.
Cosmological models with a variable /\ term in higher dimensional spacetime (A. Pradhan, G. P. Singh and S. Kotambkar) Fizika B, (Zagreb), Vol. 15, No. 1, (2006), 23-36.
Plane symmetric inhomogeneous bulk viscous domain wall in Lyra geometry (A. Pradhan, Vandana Rai and Saeed Otarod). Fizika B (Zagreb), Vol. 15, No. 2, (2006), 57-70. arXiv: gr-qc/0508087.
Cosmological models of Universe with variable deceleration parameter in Lyra manifold (A. Pradhan, J. P. Shahi and C. B. Singh) Braz. J. Phys., Vol. 36, No. 4A, (2006), 1227-1231. arXiv: gr-qc/0608070.
Universe with time dependent deceleration parameter and /\ term in general relativity (A. Pradhan and Saeed Otarod) Astrophys. Space Sci., Vol. 306, No. 1-2, (2006), 11-16. arXiv: gr-qc/0607129.
Higher dimensional cosmological implications of a decay law for /\ term: expressions for some observable quantities (A. Pradhan, G. S. Khadekar and Deepak Srivastava) Astrophys. Space Sci., 305, No. 4, (2006), 415- 421. arXiv: gr-qc/0506112.
Spherically symmetric non-singular models with varying cosmological term/\ (A. Pradhan, Kashika Srivastava and R. P. Singh) Fizika B (Zagreb), Vol. 15, No. 3, (2006), 141-156.
Generation of Bianchi type V bulk viscous cosmological models with time dependent /\-Term (A. Pradhan, K. Jotania and Anju Rai) Fizika B (Zagreb), Vol. 15, No. 4, (2006), 163-182. arXiv: gr-qc/0611031.
Generation of Bianchi type V cosmological models with varying /\-term (A. Pradhan, A. K. Yadav and L. Yadav) Czech. J. Phys. Vol. 55, No.4, (2005), 503-518. arXiv: gr-qc/0408070.
Plane-symmetric inhomogeneous magnetized viscous fluid universe with a variable (A. Pradhan and Purnima Pandey) Czech. J. Physics Vol. 55, No.6, (2005), 749-764. arXiv: gr-qc/0506113.
Some homogeneous Bianchi type IX viscous fluid cosmological models with a variable /\ (A. Pradhan, S. K. Srivastav and M. K. Yadav) Astrophys. Space Sci. Vol. 298, No. 3, (2005), 419-432. arXiv: gr-qc/0307039.
Isotropic homogeneous universe with bulk viscous fluid in Lyra geometry (A. Pradhan, Lallan Yadav and Anil Kumar Yadav) Astrophys. Space Sci. Vol. 299, No. 1, (2005), 31-42.
Causal bulk viscous LRS Bianchi type I models with variable gravitational and cosmological constant" (A. Pradhan, P. Pandey, G. P. Singh and R. V. Deshpandey) Spacetime & Substance Vol. 6, No. 3(28), (2005), 116-120. arXiv: gr-qc/0310023.
Plane-symmetric magneto-fluid universe with time dependent cosmological term (A. Pradhan, K. D. Thengane and Jyotsna K. Jumale) Spacetime & Substance, Vol. 4(29), (2005), 145-150.
Some inhomogeneous magnetized viscous fluid cosmological models with varying /\ (A. Pradhan, S. K. Srivastav and Kanti R. Jotania) Czech. J. Phys. Vol. 54, No. 2 (2004), 255-272. arXiv: gr-qc/0306039.
A new class of LRS Bianchi type-I cosmological models in Lyra geometry (A. Pradhan and A. K. Vishwakarma). J. Geom. Phys. Vol. 49, Issue 3-4 March (2004), 332-342.
Viscous fluid cosmological models in LRS Bianchi type V universe with varying /\ (A. Pradhan, L. Yadav and A. K. Yadav) Czech. J. Phys. Vol. 54, (2004), 487-498.
Bianchi type-I magnetofluid cosmological models with variable cosmological constant revisited (A. Pradhan and Sanjay K. Singh) Int. J. Mod. Phys. Vol. D 13 (3), (2004), 503-516. arXiv: gr-qc/0307058.
Bulk viscous cosmological models in Barber's self creation theory (A. Pradhan and H. R. Pandey) Indian J. pure appl. Math. Vol. 35, Issue 4, (2004), 513-523. arXiv: gr-qc/0207027.
Tilted Bianchi type V bulk viscous cosmological models in general relativity Revisited (A. Pradhan and Abha Rai) Astrophys. Space Sci. Vol. 291, Issue 2, (2004), 151-162. arXiv: gr-qc/0307045.
Generation of Bianchi type V cosmological models with varying /\-term (A. Pradhan and S. K. Singh) Spacetime & Substance Vol. 5, No. 3(23), (2004), 97-103.
Tilted Bianchi Type I universe for barotropic perfect fluid in general relativity (A. Pradhan and O. P. Pandey) Spacetime & Substance Vol. 5, No. 4(24), (2004), 149-153.
Higher dimensional cosmological models in Lyra geometry revisited (A. Pradhan, G. P. Singh and S. Kotambkar) Int. J. Mod. Phys. Vol. D 12(5), (2003), 853-860.
Plane symmetric inhomogeneous cosmological models with variable /\ (A. Pradhan and H. R. Pandey) Int. J. Mod. Phys. Vol. D 12(5), (2003), 941-951. arXiv: gr-qc/0211002.
Bianchi type-I anisotropic magnetized cosmological models with varying /\(A. Pradhan and O. P. Pandey) Int. J. Mod. Phys., Vol. D 12(7), (2003), 1299-1314. arXiv: gr-qc/0212109.
Tilted Bianchi type I cosmological models filled with disordered radiation in general relativity revisited (A. Pradhan and Abha Rai) Astrophys. Space Sci. Vol. 286, no. 3-4, (2003), 347-358. arXiv: gr-qc/0212108.
Plane symmetric domain wall in Lyra geometry (A. Pradhan, Aotemshi I. and G. P. Singh) Astrophys. Space Sci. Vol. 288, no. 3, (2003), 315-325. arXiv: gr-qc/0207024.
Bulk viscous cosmological models in Lyra geometry (A. Pradhan and H. R. Pandey) arXiv: gr-qc/0307038.
A new class of LRS Bianchi type-I cosmological models with perfect fluid (A. Pradhan and A. K. Vishwakarma) Ind. J. pure appl. Math. Vol. 33(8), (2002) 1239-1250.
LRS Bianchi type-I cosmological models in Barbers's second self-creation theory (A. Pradhan and A. K. Vishwakarma) Int. J. Mod. Phys. Vol. D 11(8), (2002), 1195-1207.
Plane-symmetry inhomogeneous viscous fluid cosmological models with electromagneticfield (A. Pradhan, V. K. Yadav and N. N. Saste) Int. J. Mod. Phy. Vol. D 11(6), (2002), 857-868.
Bulk viscous anisotropic cosmological models with variable G and /\ (A. Pradhan and V. K. Yadav) Int. J. Mod. Phys. D, Vol. D 11(6), (2002), 893-912.
Plane symmetric cosmological models in the presence of zero-mass scalar fields (A. Pradhan and H. R. Pandey) Spacetime & Substance Vol.2(12), (2002), 76-80.
Bulk viscous solutions to the field equations and the deceleration parameterrevisited (A. Pradhan and Iotemshi I.) Int. J. Mod. Phys. Vol. D 11 (9), (2002), 1419-1434.arXiv: gr-qc/0207023.
Conformally at spherically symmetric cosmological models-revisited (A. Pradhan and O. P. Pandey) Spacetime & Substance Vol. 4(14), (2002), 169-173. arXiv: gr-qc/0211008.
LRS Bianchi I cosmological model in the presence of zero-mass scalar fields (A. Pradhan, K. L. Tiwari and A. Beesham) Ind. J. pure appl. Math.Vol. 32(6), (2001), 789-795.
LRS Bianchi I cosmological universe models with varying cosmological term /\ (A. Pradhan and A. Kumar). Int. J. Mod. Phys. Vol. D 10(3), (2001), 291-298.
LRS Bianchi I cosmological models with perfect fluid (A. Pradhan and A. Kumar) SUJST, Vol. XIII, Sec.B, (2001), 44-47.
Bulk viscous FRW cosmology in Lyra geometry (A. Pradhan, V.K.Yadav and I. Chakrabarty) Int. J. Mod. Phys. Vol. D 10(3), (2001), 339-349.
LRS Bianchi I models with time varying gravitational and cosmological constants (A. Pradhan and I. Chakrabarty) Gravitation & Cosmology, Vol.7, No.1(25), (2001), 55-57.
Magnetized cylindrically symmetric universe with bulk viscosity (I. Chakrabarty A. Pradhan and N. N. Saste) Int. J. Mod. Phys. Vol. D 10(5), (2001), 741-750.
On wave solutions of the field equations of General Relativity containing electromagnetic field in generalized Peres-space-times (K. B. Lal and A. Pradhan) Acc. Naz. Dei Lincai, series VIII, Vol. LVIII, No. 2 (1975), 215-219.
Wave solutions of unified field theory of Israel and Trollope in a generalized Peres space-time (K. B. Lal and A. Pradhan) Rev. de la Faculte des sc. de l'Univ. d'Istanbul, series A, Vol. 40 (1975), 39-45.
On plane wave-like solutions of Finzi's non-symmetric unified field theory (K. B. Lal and A. Pradhan) Proc. Int. Symp. on Rel. and Unified field theory, S. N. Bose Inst. of Physical Sciences, Calcutta, India (1975-76), 191-194.
On wave solutions of the field equations of general relativity containing zero-rest-mass scalar fields (K. B. Lal and A. Pradhan) Acc. Naz. Dei Lincai, series VIII, Vol. LXI, No. 1-2 (1976), 109-114.
On wave solutions of the unified field equations of Finzi in a generalized Peres space-time (K. B. Lal and A. Pradhan) Rev. de la Fac. des. Sci., de'l Univ. d'Istanbul, Vol. 41 (1976), 29-38.
Some plane wave-like solutions of weakened fields equations in a generalized Peres space-time (K. K. Lal and A. Pradhan) Ind. J. Pure Appl. Math., Vol. 8, No. 3 (1977), 268-272.
On wave solutions of Gauge-Invariant generalization of field theories with a symmetric fundamental tensor in a generalized Peres space-time (A. Pradhan Ann. di Mat. Pura ed applicate (IV), Vol. CXIV (1977), 365-375.
On wave solutions of the non-symmetric unified field theories (A. Pradhan) Rev. Mat. Fisica Teorica, Vol. XXVII (1977).
On wave solutions of Einstein's field equations of general relativity containing zero-rest-mass scalar fields (K. B. Lal and A. Pradhan) Jour. Math. & Phys. Sci. Vol. 11, No. 6 (1977), 513-520.
On the Generalized Peres space-time (A. Pradhan) Jour. Math.& Phys. Sci. Vol. 12, No. 6 (1978), 547-557.
On geometric properties of plane wave solutions in general relativity (A. Pradhan) Rev. Math. Fisica Teorica (1978).
Classical dynamics of matter and antimatter in scalar-tensor and time symmetric universe (A. Pradhan) Proc. Mathematical Society, B. H. U., Vol. 3 (1978), 223-230.
On Rainich's unified field theory (A. Pradhan) Proc. Mathematical Society, B. H. U. Vol. 5 (1989), 192-193.
Changing Concepts of the Universe (A. Pradhan) Proc. of first Refresher Course Seminar in Mathematics, hfield by A. S. C., B. H. U. from March 27 to April 8, 1989, p. 41-51.
Plane symmetric viscous fluid model (A. Pradhan, R. V. Saraykar and A. Beesham) Astro. Lett. Commun. Vol. 35, (1997), 383-387.
A new class of LRS Bianchi type-I cosmological models with variable G and /\ (A. Pradhan and A. K. Vishwakarma) SUJST, Vol. XII, Sec.B, (2000), 42-48.