Dynamical and Statistical Sequential Decay Effect on Isoscaling

  • Isoscaling roles have been studied for two isospin similar system by isospin dependent quantum molecular dynamical model (IQMD) and statistical sequential decay model GEMINI. For the light fragments, isoscaling parameter α increases with the reaction time, the heavy fragment presents decreasing with reaction time. α of the light fragment keeps flat, but α of the intermediate and heavy fragments is dependent on the fragment size, increases with the fragment size. Statistical sequential decay will increase isoscaling parameter α slightly, but does not change the roles in light and heavy fragments.
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TIAN Wen-Dong, MA Yu-Gang, CAI Xiang-Zhou, FANG De-Qing, WANG Hong-Wei, GUO Wei and WANG Kun. Dynamical and Statistical Sequential Decay Effect on Isoscaling[J]. Chinese Physics C, 2006, 30(S2): 280-282.
TIAN Wen-Dong, MA Yu-Gang, CAI Xiang-Zhou, FANG De-Qing, WANG Hong-Wei, GUO Wei and WANG Kun. Dynamical and Statistical Sequential Decay Effect on Isoscaling[J]. Chinese Physics C, 2006, 30(S2): 280-282. shu
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Received: 2006-10-18
Revised: 1900-01-01
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Dynamical and Statistical Sequential Decay Effect on Isoscaling

    Corresponding author: TIAN Wen-Dong,
  • Institute of Applied Physics, CAS, Shanghai 201800, China

Abstract: Isoscaling roles have been studied for two isospin similar system by isospin dependent quantum molecular dynamical model (IQMD) and statistical sequential decay model GEMINI. For the light fragments, isoscaling parameter α increases with the reaction time, the heavy fragment presents decreasing with reaction time. α of the light fragment keeps flat, but α of the intermediate and heavy fragments is dependent on the fragment size, increases with the fragment size. Statistical sequential decay will increase isoscaling parameter α slightly, but does not change the roles in light and heavy fragments.

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