78
S. Sood et al.
Acknowledgements This work is funded by Council of Scientific and Industrial Research (CSIR),
Govt. of India, vide Grant No. 03(1388)/16/EMR-II.
References
1. M.B. Tsang et al., Onset of nuclear vaporization in 197 Au+ 197 Au collision. Phys. Rev. Lett.
71, 1502 (1993)
2. A. Schüttauf et al., Universaility of spectator fragmentation at relativistic bombarding energies.
Nucl. Phys. A 607, 457 (2000)
3. B. Borderie et al., Nuclear multifragmentation and phase transition for hot nuclei. Prog. Part.
Nucl. Phys. 51, 551 (2008)
4. J.E. Finn et al., Nuclear fragment mass yields from high-energy proton-nucleus interactions.
Phys. Rev. Lett. 49, 1321 (1982)
5. T. Li et al., Mass dependence of critical behavior in nucleus-nucleus collisions. Phys. Rev. C
49, 1630–1634 (1994)
6. S. Sood, R. Kumar, A. Sharma, R.K. Puri, Cluster formation and phase transition in nuclear
dissembly using a variety of clusterization algorithms. Phys. Rev. C 99, 054612 (2019)
7. R. Kumar, S. Sood, A. Sharma, R.K. Puri, On the multifragmentation and phase transition in
the perspectives of different n-body dynamical models. Act. Phys. Pol. B 49, 301 (2018)
8. A. Sharma, A. Bharti, Isospin effects via Coulomb forces on the onset of multifragmentation
in light and heavily charged systems. Eur. Phys. J. A 52, 42 (2016)
9. M.L. Gilkes et al., Phys. Rev. Lett. 73, 1590 (1994)
10. J. Pochodzalla et al., Probing the nu clear liquid-gas phase transition. Phys. Rev. Lett. 75, 1040
(1995)
11. X. Campi, Signals of a phase transition in nuclear multifragmentation, Phys. Lett. B 208, 351
(1988); ibid., J. Phys. A: Math. Gen. 19, L917 (1986)
12. Y.G. Ma et al., Critical behavior in light nuclear systems: experimental aspects. Phys. Rev. C
71, 054606 (2005)
13. Y.G. Ma, et al., Evidence of critical behavior in the disassembly of nuclei with A=36, Phys.
Rev. C 69, 031604 (R) (2004)
14. Y.G. Ma et al., Onset of multifragmentation in intermediate energy light asymmetyric collisions.
Phys. Rev. C 51, 710 (1995)
15. M. Belkacem et al., Searching for the nuclear liquid-gas phase transition in Au+Au collisions
at 35 MeV/nucleon. Phys. Rev. C 54, 2435 (1996)
16. W. Lin et al., Sensitivity study of experimental measures for the nuclear liquid-gas phase
transition in the statistical multifragmentation model. Phys. Rev. C 97, 054615 (2018)
17. H.L. Liu, Y.G. Ma, D.Q. Fang, Finite-size scaling phenomenon of nuclear liquid-gas phase
transition probes. Phys. Rev. C 99, 054614 (2019)
18. B. Borderie et al., Evidence for Spinodal Decomposition in Nuclear Multifragmentation. Phys.
Rev. Lett. 86, 3252 (2001)
19. B. Borderie et al., Phase transition dynamics for hot nuclei. Phys. Lett. B 782, 291 (2018)
20. R.K. Puri, J. Aichelin, Simulating annealing clusterization algorithm for studying the multifragmentation. J. Comput. Phys. 162, 245 (2000); J. Phys. G: Nucl. Part. Phys. 37, 015105;
R.K. Puri et al., Early fragment formation in heavy-ion collisions. Phys. Rev C 54, R28
21. J. Aichelin et al., Quantum molecular dynamic: A dynamical microscopic n-body approach to
investigate fragment formation and the nuclear equation of state in heavy-ion collisions. Phys.
Rep. 202, 233 (1991)
22. S. Kumar, R.K. Puri, Role of momentum correlations in fragment formation. Phys. Rev. C 58,
320 (1998)
23. S. Kumar, R.K. Puri, Stability of fragments formed in the simulations of central heavy ion
collisions. Phys. Rev. C 58, 2858 (1998)
S. Sood et al.
Acknowledgements This work is funded by Council of Scientific and Industrial Research (CSIR),
Govt. of India, vide Grant No. 03(1388)/16/EMR-II.
References
1. M.B. Tsang et al., Onset of nuclear vaporization in 197 Au+ 197 Au collision. Phys. Rev. Lett.
71, 1502 (1993)
2. A. Schüttauf et al., Universaility of spectator fragmentation at relativistic bombarding energies.
Nucl. Phys. A 607, 457 (2000)
3. B. Borderie et al., Nuclear multifragmentation and phase transition for hot nuclei. Prog. Part.
Nucl. Phys. 51, 551 (2008)
4. J.E. Finn et al., Nuclear fragment mass yields from high-energy proton-nucleus interactions.
Phys. Rev. Lett. 49, 1321 (1982)
5. T. Li et al., Mass dependence of critical behavior in nucleus-nucleus collisions. Phys. Rev. C
49, 1630–1634 (1994)
6. S. Sood, R. Kumar, A. Sharma, R.K. Puri, Cluster formation and phase transition in nuclear
dissembly using a variety of clusterization algorithms. Phys. Rev. C 99, 054612 (2019)
7. R. Kumar, S. Sood, A. Sharma, R.K. Puri, On the multifragmentation and phase transition in
the perspectives of different n-body dynamical models. Act. Phys. Pol. B 49, 301 (2018)
8. A. Sharma, A. Bharti, Isospin effects via Coulomb forces on the onset of multifragmentation
in light and heavily charged systems. Eur. Phys. J. A 52, 42 (2016)
9. M.L. Gilkes et al., Phys. Rev. Lett. 73, 1590 (1994)
10. J. Pochodzalla et al., Probing the nu clear liquid-gas phase transition. Phys. Rev. Lett. 75, 1040
(1995)
11. X. Campi, Signals of a phase transition in nuclear multifragmentation, Phys. Lett. B 208, 351
(1988); ibid., J. Phys. A: Math. Gen. 19, L917 (1986)
12. Y.G. Ma et al., Critical behavior in light nuclear systems: experimental aspects. Phys. Rev. C
71, 054606 (2005)
13. Y.G. Ma, et al., Evidence of critical behavior in the disassembly of nuclei with A=36, Phys.
Rev. C 69, 031604 (R) (2004)
14. Y.G. Ma et al., Onset of multifragmentation in intermediate energy light asymmetyric collisions.
Phys. Rev. C 51, 710 (1995)
15. M. Belkacem et al., Searching for the nuclear liquid-gas phase transition in Au+Au collisions
at 35 MeV/nucleon. Phys. Rev. C 54, 2435 (1996)
16. W. Lin et al., Sensitivity study of experimental measures for the nuclear liquid-gas phase
transition in the statistical multifragmentation model. Phys. Rev. C 97, 054615 (2018)
17. H.L. Liu, Y.G. Ma, D.Q. Fang, Finite-size scaling phenomenon of nuclear liquid-gas phase
transition probes. Phys. Rev. C 99, 054614 (2019)
18. B. Borderie et al., Evidence for Spinodal Decomposition in Nuclear Multifragmentation. Phys.
Rev. Lett. 86, 3252 (2001)
19. B. Borderie et al., Phase transition dynamics for hot nuclei. Phys. Lett. B 782, 291 (2018)
20. R.K. Puri, J. Aichelin, Simulating annealing clusterization algorithm for studying the multifragmentation. J. Comput. Phys. 162, 245 (2000); J. Phys. G: Nucl. Part. Phys. 37, 015105;
R.K. Puri et al., Early fragment formation in heavy-ion collisions. Phys. Rev C 54, R28
21. J. Aichelin et al., Quantum molecular dynamic: A dynamical microscopic n-body approach to
investigate fragment formation and the nuclear equation of state in heavy-ion collisions. Phys.
Rep. 202, 233 (1991)
22. S. Kumar, R.K. Puri, Role of momentum correlations in fragment formation. Phys. Rev. C 58,
320 (1998)
23. S. Kumar, R.K. Puri, Stability of fragments formed in the simulations of central heavy ion
collisions. Phys. Rev. C 58, 2858 (1998)
