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Dynamical approach to fusion-fission process in superheavy mass region

机译:超重质量区聚变裂变过程的动力学方法

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In order to describe heavy-ion fusion reactions around the Coulomb barrier with an actinide target nucleus, we propose a model which combines the coupled-channels approach and a fluctuation-dissipation model for dynamical calculations. This model takes into account couplings to the collective states of the interacting nuclei in the penetration of the Coulomb barrier and the subsequent dynamical evolution of a nuclear shape from the contact configuration. In the fluctuation-dissipation model with a Langevin equation, the effect of nuclear orientation at the initial impact on the prolately deformed target nucleus is considered. Fusion-fission, quasifission and deep quasifission are separated as different Langevin trajectories on the potential energy surface. Using this model, we analyze the experimental data for the mass distribution of fission fragments (MDFF) in the reaction of 36S+238U at several incident energies around the Coulomb barrier.
机译:为了描述带有with系元素靶核的库仑势垒周围的重离子聚变反应,我们提出了一个模型,该模型结合了耦合通道方法和波动耗散模型进行动力学计算。该模型考虑了在库仑势垒的渗透中相互作用核的集体状态的耦合以及从接触构型开始的随后核形状的动态演化。在具有Langevin方程的波动耗散模型中,考虑了初始取向时向扁平变形的目标原子核的核取向的影响。聚变裂变,拟裂变和深拟裂变被分离为势能面上不同的兰格文轨迹。使用该模型,我们分析了36S + 238U在库仑势垒周围几个入射能量反应中裂变碎片(MDFF)的质量分布的实验数据。

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