Role of Incident Energy of Reaction on the Energy and Geometry of Vanishing Flow for Au-Au Collisions.

Authors

  • Supriya Goyal

Keywords:

heavy-ion collisions, balance energy, impact parameter, geometry of vanishing flow, directed/collective transverse flow, 197Au 197Au collisions, QMD

Abstract

We study the role of incident energy and impact parameter on the collective transverse flow, energy of vanishing flow (EVF) and the geometry of vanishing flow (GVF) for 197Au+197Au collisions using Quantum Molecular Dynamics Model (QMD). Our results clearly indicate that EVF and GVF are quite sensitive to the colliding geometry and incident energy of the reaction, respectively.

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References

P. Danielewicz, R. Lacey, and W. Lynch, Science 298, 1592 (2002).

Y. Zhang and Z. Li, Phys. Rev., Ser. C 74, 014602 (2006); M. W. Zhang et al., Phys. Rev., Ser. C 42, R491 (1990); D. Beavis et al., Phys. Rev., Ser. C 45, 299 (1999).

B. Hong et al., Phys. Rev., Ser. C 71, 034902 (2002).

Q. Pan and P. Danielewicz, Phys. Rev. Lett. 70, 2062 (1993); V. Ramillien et al., Nucl. Phys., Ser. A 587, 802 (1995).

J. Lukasik et al., Phys. Lett., Ser. B 608, 223 (2005).

C. A. Ogilvie et al., Phys. Rev., Ser. C 40, 2592 (1989); B. Blättel et al., Phys. Rev., Ser. C 43, 2728 (1991).

A. Andronic et al., Phys. Rev., Ser. C 67, 034907 (2003); A. D. Sood and R. K. Puri, Phys. Rev., Ser. C 69, 054612 (2004); A. Andronic et al., Phys. Rev., Ser. C 73, 067602 (2006); A. Andronic et al., Eur. Phys. J., Ser. A 30, 571 (2006).

S. Goyal, Phys. Rev., Ser. C 83, 047604 (2011); S. Goyal and R. K. Puri, Nucl. Phys., Ser. A 853, 164 (2011).

B. A. Li et al., Phys. Rev. Lett. 76, 4492 (1996).

R. Pak et al., Phys. Rev. Lett. 78, 1022 (1997); R. Pak et al., 78, 1026 (1997).

S. Gautam et al., Phys. Rev., Ser. C 83, 034606 (2011); V. Kaur, S. Kumar, and R. K. Puri, Phys. Lett., Ser. B 697, 512 (2011).

D. Krofcheck et al., Phys. Rev. Lett. 63, 2028 (1989).

G. D. Westfall et al., Phys. Rev. Lett. 71, 1986 (1993); A. Buta et al., Nucl. Phys., Ser. A 584, 397 (1995).

A. D. Sood and R. K. Puri, Phys. Rev., Ser. C 73, 067602 (2006); D. J. Majestro et al., Phys. Rev., Ser. C 61, 021602(R) (2000); A. D. Sood and R. K. Puri, Phys. Rev., Ser. C 70, 034611 (2004); S. Kumar et al., Phys. Rev., Ser. C 58, 3494 (1998).

L. Scalone, M. Colonna, and M. Di Toro, Phys. Lett., Ser. B 461, 9 (1991).

S. Gautam et al., J. Phys., Ser. G 37, 085102 (2010); S. Gautam and A. D. Sood, Phys. Rev., Ser. C 82, 014604 (2010); S. Gautam et al., Phys. Rev., Ser. C 83, 014603 (2011); S. Gautam and R. K. Puri, Phys. Rev., Ser. C 85, 067601 (2012); S. Gautam, R. Kumari, and R. K. Puri, Phys. Rev., Ser. C 86, 034607 (2012).

S. Kumar et al., Phys. Rev., Ser. C 81, 014611 (2010).

S. Kumar and R. K. Puri, Phys. Rev., Ser. C 81, 014601 (2010).

R. Chugh and A. D. Sood, Parma. J. Phys. 77, 289 (2011); S. Goyal, Nucl. Phys., Ser. A 856, 154 (2011), Lovejot and S. Gautam, Physics of Particles and Nuclei Letters 11, 232 (2014).

J. Aichelin and H. Stöcker, Phys. Lett., Ser. B 176, 14 (1986); J. Aichelin, Phys. Rep. 202, 233 (1991).

J. Cugnon, T. Mizutani, and J. Vandermeulen, Nucl. Phys., Ser. A 352, 505 (1981).

E. Lehmann et al., Phys. Rev., Ser. C 51, 2113 (1995); E. Lehmann et al., Prog. Part. Nucl. Phys. 30, 219 (1993).

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Published

09.07.2024

How to Cite

Supriya Goyal. (2024). Role of Incident Energy of Reaction on the Energy and Geometry of Vanishing Flow for Au-Au Collisions. International Journal of Intelligent Systems and Applications in Engineering, 12(22s), 1901–1908. Retrieved from https://www.ijisae.org/index.php/IJISAE/article/view/7124

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Research Article