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中能重离子碰撞中同位旋分馏的同位旋效应
引用本文:邢永忠,刘建业,郭文军. 中能重离子碰撞中同位旋分馏的同位旋效应[J]. 中国物理 C, 2004, 28(4): 403-407
作者姓名:邢永忠  刘建业  郭文军
作者单位:[1]天水师范学院近代物理理论研究所,天水741000 [3]兰州重离子加速器国家实验室原子核理论中心,兰州730000
基金项目:国家重大基础研究发展项目 (G2 0 0 0 0 7740 0 ),中国科学院百人计划基金,国家自然基金 ( 10 175 0 80 ,10 0 0 40 12 ,10 175 0 82 ),中国科学院知识创新工程重点方向项目(KJCX2 SW N0 2 )资助~~
摘    要:基于改进的同位旋相关量子分子动力学模型,研究了中能重离子碰撞中同位旋分馏强度(N/Z)(N/Z)随着碰撞系统中子–质子比和碰撞参数的变化所呈现出的同位旋效应,得到了一些有兴趣的结果.如在碰撞系统质量、入射能量和碰撞参数固定的条件下,(N/Z)(N/Z)随碰撞系统中子–质子比的增加而增加.对于丰中子系统而言,(N/Z)(N/Z)灵敏地依赖于对称势而较弱地依赖于核子–核子碰撞截面;而缺中子系统,(N/Z)(N/Z)对于对称势和介质中核子–核子碰撞截面都不灵敏.对于造成这种现象的物理机制进行了分析和讨论.一般核反应中,碰撞参数是各种物理观测量的灵敏函数,但计算结果表明同位旋分馏强度对于碰撞参数并不灵敏,故对于丰中子系统而言,同位旋分馏强度是提取对称势知识的灵敏物理观测量.

关 键 词:中能重离子碰撞  同位旋分馏  同位旋效应
收稿时间:2003-07-10
修稿时间:2003-07-10

Isospin Effects in the Isospin Fractionation Process in Intermediate Energy Heavy Ion Collisions
XING Yong-Zhong ,:) LIU Jian-Ye ,, GUO Wen-Jun. Isospin Effects in the Isospin Fractionation Process in Intermediate Energy Heavy Ion Collisions[J]. High Energy Physics and Nuclear Physics, 2004, 28(4): 403-407
Authors:XING Yong-Zhong   :) LIU Jian-Ye      GUO Wen-Jun
Affiliation:XING Yong-Zhong 1,3:1) LIU Jian-Ye 1,2,3 GUO Wen-Jun 21
Abstract:Based on the isospin dependent quantum molecular dynamics model we investigated the isospin effects of isospin fractionation (N/Z) gas/(N/Z) liq from the neutron-proton ratio of colliding system and impact parameter. Here (N/Z) gas and (N/Z) liq is the neutron-proton ratio of nucleon emission for gas phase and that of fragment emission for liquid phase, respectively. Our results show that the (N/Z) gas/(N/Z) liq increases with the neutron-proton ratio of colliding systems when the system mass, incident energy and impact parameters are fixed. For the neutron-rich systems, the (N/Z) gas/(N/Z) liq depends sensitively to the form of symmetry potential and weakly on the isospin effect of the in-medium nucleon-nucleon cross section; For the neutron-poor colliding system, however, the (N/Z) gas/(N/Z) liq is not sensitive to both the form of symmetry potential and the isospin effect of the in-medium nucleon-nucleon cross section. We also found that the dependence of (N/Z) gas/(N/Z) liq on the impact parameter is not obvious. Detailed discussion and explanation for leading to these results are presented in the paper. According to these results, we propose that (N/Z) gas/(N/Z) liq can be directly compared with the experimental data to get the information about symmetry potential.
Keywords:intermediate energy heavy ion collision   isospin fractionation   isospin effect
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