arXiv:0711.0127·v1·Nuclear Theory
Phenomenological Scaling of Rapidity Dependence for Anisotropic Flows in 25 MeV/nucleon Ca + Ca by Quantum Molecular Dynamics Model
T. Z. Yan🇨🇳 · Y. G. Ma🇨🇳 · X. Z. Cai🇨🇳 · D. Q. Fang🇨🇳 · G. C. Lu🇨🇳 · W. Q. Shen🇨🇳 · W. D. Tian🇨🇳 · H. W. Wang🇨🇳 · K. Wang🇨🇳
Abstract
Anisotropic flows (, , and ) of light fragments up till the mass number 4 as a function of rapidity have been studied for 25 MeV/nucleon Ca + Ca at large impact parameters by Quantum Molecular Dynamics model. A phenomenological scaling behavior of rapidity dependent flow parameters (n = 1, 2, 3 and 4) has been found as a function of mass number plus a constant term, which may arise from the interplay of collective and random motions. In addition, keeps almost independent of rapidity and remains a rough constant of 1/2 for all light fragments.
Comments: 4 pages, 5 figures