Dynamical Simulation of Gamma-Ray Multiplicity in B10+Np23, B11+ Th232, C12+Th232, O16 +Th232 Heavy Ion Fusion-Fission Reactions

M. Pahlavani, S. M. Mirfathi, D. Naderi
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Abstract

A dynamical Monte Carlo simulation based on the three dimensional Langevin equations applied to obtain gamma- ray multiplicity emitted from highly excited compound nucleus. In induced fusion-fission reaction, resultant compound system is looses a part of its energy via gamma-ray emission both before and after saddle point that can be measure using proper apparatus. In this paper, gamma-ray multiplicity have been measured and calculated following the B10+Np23, B11+ Th232 ,C12+Th,232 O16 +Th232 reactions. Comparison of experimental and calculated data suggests significant effect of the asymmetry parameter.
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B10+Np23, B11+ Th232, C12+Th232, O16 +Th232重离子聚变-裂变反应中伽马射线多重性的动态模拟
基于三维朗之万方程的动态蒙特卡罗模拟用于计算高激发复合核发射的伽马射线多重性。在诱导聚变-裂变反应中,合成的复合体系在鞍点前后的伽玛射线发射中损失了一部分能量,可以用适当的仪器测量。本文测量并计算了B10+Np23、B11+ Th232、C12+Th、232、O16 +Th232反应后的伽马射线多重率。实验数据和计算数据的对比表明,不对称参数的影响非常显著。
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