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Mechanism of ternary breakup in the reaction 197Au+197Au at 15A MeV

机译:197Au + 197Au在15A MeV下的三元分解机理

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摘要

The mechanism of the ternary breakup of the very heavy system 197Au+197Au at an energy of 15A MeV has been studied by using the improved quantum molecular dynamics model. The calculation results reproduce the characteristic features in ternary breakup events explored in a series of experiments; i.e., the masses of three fragments are comparable in size and the very fast, nearly collinear breakup of the colliding system is dominant in the ternary breakup events. Further, the evolution of the time scales of different ternary reaction modes and the behavior of mass distributions of three fragments with impact parameters are studied. The time evolution of the configurations of the composite reaction systems is also studied. We find that for most of the ternary breakup events with the features found in the experiments, the configuration of the composite system has two-preformed-neck shape. The study shows that those ternary breakup events having the characteristic features found in the experiments happen at relatively small impact parameter reactions, but not at peripheral reactions. The ternary breakup reaction at peripheral reactions belongs to binary breakup with a neck emission.
机译:通过使用改进的量子分子动力学模型,研究了非常重的系统197Au + 197Au在15A MeV能量下的三元分解机理。计算结果再现了一系列实验中探索的三元分解事件的特征。即,三个碎片的质量在大小上相当,并且碰撞系统的非常快,几乎共线的破裂在三元破裂事件中占主导地位。此外,研究了不同三元反应模式的时间尺度的演变以及具有冲击参数的三个片段的质量分布行为。还研究了复合反应系统构型的时间演化。我们发现,对于大多数具有实验中发现的特征的三元分解事件,复合系统的构型具有两个预制的颈部形状。研究表明,具有在实验中发现的特征的三元分解事件发生在相对较小的冲击参数反应上,而不是在外围反应上发生。周围反应的三元分解反应属于具有颈发射的二元分解。

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