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Chinese Physics, 2006, Vol. 15(7): 1481-1485    DOI: 10.1088/1009-1963/15/7/017
NUCLEAR PHYSICS Prev   Next  

Isoscaling of projectile-like fragments

Zhong Chen (钟晨), Ma Yu-Gang (马余刚), Fang De-Qing (方德清), Cai Xiang-Zhou (蔡翔舟), Chen Jin-Gen (陈金根), Shen Wen-Qing (沈文庆), Tian Wen-Dong (田文栋), Wang Kun (王鲲), Wei Yi-Bin (魏义彬), Chen Jin-Hui (陈金辉), Guo Wei (郭威), Ma Chun-Wang (马春旺), Ma Guo-Liang (马国亮), Su Qian-Min (苏前敏), Yan Ting-Zhi (颜庭志), Zuo Jia-Xu (左嘉旭)
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China
Abstract  In this paper, the isotopic and isotonic distributions of projectile fragmentation products have been simulated by a modified statistical abrasion--ablation model and the isoscaling behaviour of projectile-like fragments has been discussed. The isoscaling parameters $\alpha$ and $\beta$ have been extracted respectively, for hot fragments before evaporation and cold fragments after evaporation. It looks that the evaporation has stronger effect on $\alpha$ than $\beta$. For cold fragments, a monotonic increase of $\alpha$ and $|\beta|$ with the increase of Z and N is observed. The relation between isoscaling parameter and the change of isospin content is discussed.
Keywords:  heavy ion reaction      projectile fragmentation      isoscaling  
Received:  30 November 2005      Revised:  24 January 2006      Accepted manuscript online: 
PACS:  25.70.Mn (Projectile and target fragmentation)  
Fund: Project supported in part by the Shanghai Development Foundation for Science and Technology of China (Grant Nos 05XD14021 and 03QA14066), the National Natural Science Foundation of China (Grant Nos 10328259, 10135030, 10405032,10405033 and 10475108), the

Cite this article: 

Zhong Chen (钟晨), Ma Yu-Gang (马余刚), Fang De-Qing (方德清), Cai Xiang-Zhou (蔡翔舟), Chen Jin-Gen (陈金根), Shen Wen-Qing (沈文庆), Tian Wen-Dong (田文栋), Wang Kun (王鲲), Wei Yi-Bin (魏义彬), Chen Jin-Hui (陈金辉), Guo Wei (郭威), Ma Chun-Wang (马春旺), Ma Guo-Liang (马国亮), Su Qian-Min (苏前敏), Yan Ting-Zhi (颜庭志), Zuo Jia-Xu (左嘉旭) Isoscaling of projectile-like fragments 2006 Chinese Physics 15 1481

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