Specialization : Theoretical High Energy Physics
Qualification :M.Sc., Ph.D.
Area of Research : Theoretical High Energy Physics
1. Parashmani Thakuria, Madhurjya Lalung, Jayanta Kumar Sarma , Twist-4 generalized parton distribution of light sea quark of spin-0 pseudoscalar mesons in light front spectator model at zero skewness (ξ= 0). Journal of Subatomic Particles and Cosmology Vol. 3 Pageno: 100052 . https://doi.org/10.1016/j.jspc.2025.100052 https://www.sciencedirect.com/science/article/pii/S3050480525000329 [2025]
2. Madhurjya Lalung, Pragyan Phukan, Jayanta K Sarma, On analytical solutions of proton’s structure functions in the framework of GLR–MQ-ZRS equation. Results in Physics Vol. 28 Pageno: 104551 . https://doi.org/10.1016/j.rinp.2021.104551 https://www.sciencedirect.com/science/article/pii/S2211379721006537 [2021]
3. Pragyan Phukan, Madhurjya Lalung, Jayanta Kumar Sarma, Small x phenomenology on gluon evolution through the BFKL equation in light of a constraint in multi-Regge kinematics. Communications in Theoretical Physics Vol. 72 2 Pageno: 025201 . 10.1088/1572-9494/ab61ee [2020]
4. Pragyan Phukan, Madhurjya Lalung, Jayanta Kumar Sarma, Studies on gluon evolution and geometrical scaling in kinematic constrained unitarized BFKL equation: application to high-precision HERA DIS data. The Eurpoean Physical Journal C Vol. 79 6 Pageno: 507 . 10.1140/epjc/s10052-019-7007-x [2019]
5. Madhurjya Lalung, Pragyan Phukan, Jayanta Kumar Sarma, On phenomenological study of the solution of nonlinear GLR-MQ evolution equation beyond leading order. Nuclear Physics A Vol. 984 Pageno: 29-43 https://www.sciencedirect.com/science/article/pii/S0375947419300089 [2019]
6. Madhurjya Lalung, Pragyan Phukan, Jayanta Kumar Sarma, Small-x analysis on the effect of gluon recombinations inside hadrons in light of the GLR-MQ-ZRS equation. Nuclear Physics A Vol. 992 Pageno: 121615 https://www.sciencedirect.com/science/article/pii/S0375947419301897 [2019]
7. Pragyan Phukan, Madhurjya Lalung, Jayanta Kumar Sarma, NNLO solution of nonlinear GLR–MQ evolution equation to determine gluon distribution function using Regge like ansatz. NUclear Physics A Vol. 968 Pageno: 275-286 https://www.sciencedirect.com/science/article/pii/S0375947417304062 [2017]
8. Madhurjya Lalung, Pragyan Phukan, Jayanta Kumar Sarma, Nonlinear effects in gluon distribution predicted by GLR-MQ evolution equation at next-to-leading order in LHC data. Nonlinear effects in gluon distribution predicted by GLR-MQ evolution equation at next-to-leading order in LHC data M Lalung, P Phukan, JK Sarma International Journal of Theoretical Physics Vol. 56 11 Pageno: 3625-3637 . https://doi.org/10.1007/s10773-017-3527-z [2017]
1. Madhurjya Lalung, Pragyan Phukan, Jayanta Kumar Sarma, $Q^2$ evolution of gluon distribution function inside the hadrons with both shadowing and antishadowing effects. Journal of Physics: Conference Series Vol. 1330 (1) Pageno: 012016 . 10.1088/1742-6596/1330/1/012016 [2019]
2. Pragyan Phukan, Madhurjya Lalung, Jayanta Kumar Sarma, Study of small x behaviour of unintegrated gluon distribution constraining gluon evolution in MD-BFKL equation. Journal of Physics: Conference Series Vol. 1330 (1) Pageno: 012017 . 10.1088/1742-6596/1330/1/012017 [2019]
1. Madhurjya Lalung, Parton Recombination and the Phenomenology of GLR Based Nonlinear Evolution Equations. Current Research Progress in Physical Science Vol. 1 Vol. 1 ISBN: 978-81-973454-5-6 Pageno: 107-126 . https://doi.org/10.9734/bpi/crpps/v1 [2024]
2. Pragyan Phukan, Madhurjya Lalung, Ranjan Saikia, Jayanta Kumar Sarma, Hadron Production in d-Au, p-Pb, Pb-Pb and Xe-Xe collisions at RHIC and LHC: Onset of Color Glass Condensate in Light of BK Evolution. Current Perspective to Physical Science Research Vol. 9 Vol. 9 ISBN: 978-81-972831-9-2 Pageno: 140-154 . 10.9734/bpi/cppsr/v9 [2024]
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