6 On the Fragment Production and Phase Transition Using QMD + SACA Model
79
24. S. Goyal, R.K. Puri, Formation of fragments in heavy-ion collisions using a modified clusterization method. Phys. Rev. C 83, 047601 (2011)
25. R. Kumar, S. Gautam, Influence of different liquid-drop based bindings on lighter mass fragments and entropy production. Eur. Phys. J. A 52, 112 (2016)
26. R. Kumar, S. Gautam, R.K. Puri, Multifragmentation within a clusterization algorithm based
on thermal binding energies. Phys. Rev. C 89, 064608 (2014)
27. R. Kumar, S. Gautam, R.K. Puri, Influence of different binding energies in clusterization
approach: fragmentation as an example. J. Phys. G: Nucl. Part. Phys. 43, 025104 (2016)
28. Y.K. Vermani et al., Microscopic approach to the spectator matter fragmentation from 400 to
1000 MeV/nucleon. Eur. Phys. Lett. 85, 62001 (2009)
29. R. Kumar, R.K. Puri, Using experimental data to test an n-body dynamical model coupled with
an energy-based clusterization algorithm at low incident energies. Phys. Rev. C 97, 034624
(2018)
30. S. Sood, R.K. Kumar, A. Sharma, R.K. Puri, On the critical behaviorin in light and heavily
charges systems. J. Phys. G: Nucl. Part. Phys. (submitted) (2020)
31. T. Furuta, A. Ono, Relevance of equilibrium in multifragmentation. Phys. Rev. C 79, 14608
(2009)
Précédent

- 95/282

Suivant