Chin. Phys. Lett.  2004, Vol. 21 Issue (10): 1914-1917    DOI:
Original Articles |
Isospin Effect of Coulomb Interaction on Momentum Dissipation in Intermediate Energy Heavy Ion Collisions
LIU Jian-Ye1,2,3;GUO Wen-Jun1;XING Yong-Zhong2,3;LI Xi-Guo1,3
1Institute of Modern Physics, Chinese Academy of Sciences, PO Box 31, Lanzhou 730000 2Department of Physics, Tianshui Normal College, Tianshui 741000 3Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator, Lanzhou 730000
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LIU Jian-Ye, GUO Wen-Jun, XING Yong-Zhong et al  2004 Chin. Phys. Lett. 21 1914-1917
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Abstract We investigate the isospin effect of Coulomb interaction on the momentum dissipation or nuclear stopping in the intermediate energy heavy ion collisions by using the isospin-dependent quantum molecular dynamics model. The calculated results show that the Coulomb interaction induces obviously the reductions of the momentum dissipation. We also find that the variation amplitude of momentum dissipation induced by the Coulomb interaction depends sensitively on the form and strength of symmetry potential. However, the isospin effect of Coulomb interaction on the momentum dissipation is less than that induced by the in-medium nucleon--nucleon cross section. In this case, Coulomb interaction does not change obviously the isospin effect of momentum dissipation induced by the in-medium two-body collision. In particular, the Coulomb interaction is preferable for standing up the isospin effect of in-medium nucleon--nucleon cross section on the momentum dissipation and reducing the isospin effect of symmetry potential on it, which is important for obtaining the feature about the sensitive dependence of momentum dissipation on the in-medium nucleon--nucleon cross section and weakly on the symmetry potential.
Keywords: 25.70.Pg     
Published: 01 October 2004
PACS:  25.70.Pg  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y2004/V21/I10/01914
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