40
S. Mallik et al.
23. S. Mallik, S.D. Gupta, G. Chaudhuri, Event simulations in a transport model for intermediate
energy heavy ion collisions: applications to multiplicity distributions. Phys. Rev. C 91, 034616
(2015)
24. G.F. Bertsch, S.D. Gupta, A guide to microscopic models for intermediate energy heavy ion
collisions. Phys. Rep. 160, 189–233 (1988)
25. S.D. Gupta, S. Mallik, G. Chaudhuri, Heavy ion reaction at intermediate energies: Theoretical
Models, To be published from World Scientific Publishers
26. S. Mallik, G. Chaudhuri, S.D. Gupta, Hybrid model for studying nuclear multifragmentation
around the Fermi energy domain: the case of central collisions of Xe on Sn. Phys. Rev. C 91,
044614 (2015)
27. W. Bauer, G.F. Bertsch, S.D. Gupta, Fluctuations and clustering in heavy-ion collisions. Phys.
Rev. Lett. 58, 863–866 (1987)
28. S. Mallik, S.D. Gupta, G. Chaudhuri, Estimates for temperature in projectile-like fragments in
geometric and transport models. Phys. Rev. C 89, 044614 (2014)
29. R.J. Lenk, V.R. Pandharipande, Nuclear mean field dynamics in the lattice Hamiltonian Vlasov
method. Phys. Rev. C 39, 2242–2249 (1989)
30. S. Mallik, G. Chaudhuri, F. Gulminelli, Sensitivity of the evaporation residue observables to
the symmetry energy. Phys. Rev. C 100, 024611 (2019)
31. J. Aichelin, Quantum molecular dynamics-a dynamical microscopic n-body approach to investigate fragment formation and the nuclear equation of state in heavy ion collisions. Phys. Rep.
202, 233–360 (1991)
32. C.B. Das, S.D. Gupta, W.G. Lynch, A.Z. Mekjian, M.B. Tsang, The thermodynamic model for
nuclear multifragmentation. Phys. Rep. 406, 1–47 (2005)
33. S. Mallik, G. Chaudhuri, F. Gulminelli, Dynamical and statistical bimodality in nuclear fragmentation. Phys. Rev. C 97, 024606 (2018)
S. Mallik et al.
23. S. Mallik, S.D. Gupta, G. Chaudhuri, Event simulations in a transport model for intermediate
energy heavy ion collisions: applications to multiplicity distributions. Phys. Rev. C 91, 034616
(2015)
24. G.F. Bertsch, S.D. Gupta, A guide to microscopic models for intermediate energy heavy ion
collisions. Phys. Rep. 160, 189–233 (1988)
25. S.D. Gupta, S. Mallik, G. Chaudhuri, Heavy ion reaction at intermediate energies: Theoretical
Models, To be published from World Scientific Publishers
26. S. Mallik, G. Chaudhuri, S.D. Gupta, Hybrid model for studying nuclear multifragmentation
around the Fermi energy domain: the case of central collisions of Xe on Sn. Phys. Rev. C 91,
044614 (2015)
27. W. Bauer, G.F. Bertsch, S.D. Gupta, Fluctuations and clustering in heavy-ion collisions. Phys.
Rev. Lett. 58, 863–866 (1987)
28. S. Mallik, S.D. Gupta, G. Chaudhuri, Estimates for temperature in projectile-like fragments in
geometric and transport models. Phys. Rev. C 89, 044614 (2014)
29. R.J. Lenk, V.R. Pandharipande, Nuclear mean field dynamics in the lattice Hamiltonian Vlasov
method. Phys. Rev. C 39, 2242–2249 (1989)
30. S. Mallik, G. Chaudhuri, F. Gulminelli, Sensitivity of the evaporation residue observables to
the symmetry energy. Phys. Rev. C 100, 024611 (2019)
31. J. Aichelin, Quantum molecular dynamics-a dynamical microscopic n-body approach to investigate fragment formation and the nuclear equation of state in heavy ion collisions. Phys. Rep.
202, 233–360 (1991)
32. C.B. Das, S.D. Gupta, W.G. Lynch, A.Z. Mekjian, M.B. Tsang, The thermodynamic model for
nuclear multifragmentation. Phys. Rep. 406, 1–47 (2005)
33. S. Mallik, G. Chaudhuri, F. Gulminelli, Dynamical and statistical bimodality in nuclear fragmentation. Phys. Rev. C 97, 024606 (2018)
