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同位旋相关的核子碰撞截面的不同形式与核子的集体流
引用本文:朱玉兰,王艳艳,邢永忠. 同位旋相关的核子碰撞截面的不同形式与核子的集体流[J]. 物理学报, 2012, 61(14): 142501-142501
作者姓名:朱玉兰  王艳艳  邢永忠
作者单位:1. 陕西师范大学物理学与信息技术学院,西安,710062
2. 天水师范学院物理与信息科学学院,天水,741000
基金项目:国家自然科学基金(批准号: 10575075, 10447006, 10435080)资助的课题.
摘    要:在详细比较同位旋相关的核子-核子碰撞截面的几种常用形式的基础上,利用IBUU模型, 分别对具有相同质量的60Ca+60Ca和60Ni+60Ni的中能重离子碰撞进行了模拟计算,定量地分析了碰撞过程中不同形式的同位旋相关的核子-核子碰撞截面对于核子的快度分布和集体流的影响.结果显示: 不同形式的核子碰撞截面,可以给出相差较大的核子的快度分布和横向流, 但在同一种截面形式下,对称势的变化对横向流的影响较小.这表明在新的动量相关的对称势下, 中能重离子碰撞中集体流对于截面的敏感性依然成立;同时表明,在相同的碰撞截面和对称势形式下, 当入射能量在平衡能附近时,入射粒子的中质比对核子在平面流的影响较大,反之,影响较小.

关 键 词:核子-核子碰撞截面  快度分布  横向流  平衡能
收稿时间:2011-08-23

Isospin-dependent nucleon-nucleon cross section and the collective flow of nucleons in heavy-ion collision at intermediate energy
Zhu Yu-Lan,Wang Yan-Yan,Xing Yong-Zhong. Isospin-dependent nucleon-nucleon cross section and the collective flow of nucleons in heavy-ion collision at intermediate energy[J]. Acta Physica Sinica, 2012, 61(14): 142501-142501
Authors:Zhu Yu-Lan  Wang Yan-Yan  Xing Yong-Zhong
Affiliation:1. College of Physics and Information Technology, Shaanxi Normal University, Xi'an 710062, China;2. Department of Physics, Tianshui Normal University, Tianshui 741000, China
Abstract:In this paper, the influences of the different forms of nucleon-nucleon (NN) cross sections on the rapidity distributions and the in-plane flows of nucleons in reactions 60Ca+60Ca and 60Ni+60Ni are studied by using IBUU04 transport model with the moment-dependent symmetry potential. The calculation results indicate that (1) the discrepancies of the rapidity distributions and in-plane flows corresponding to different forms of NN cross sections are large, (2) the sensitivity of the in-plane flow to the NN cross section still holds when the new form of moment-dependent symmetry energy is adopted, and (3) the influence of the N/P ratio of reaction systems on the transverse flow calculated with a certain NN cross section is more obvious when the incident energy is near the balance energy.
Keywords:nucleon-nucleon cross section  rapidity distribution  transverse flow  balance energy
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