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首页> 外文期刊>Physical review, C >Theoretical study of effects of the entrance channel on the relative yield of complete fusion and quasifission in heavy-ion collisions within a dinuclear system approach
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Theoretical study of effects of the entrance channel on the relative yield of complete fusion and quasifission in heavy-ion collisions within a dinuclear system approach

机译:入口通道对大胆系统方法中重离子碰撞完全融合和Quasifisif的相对产量的理论研究

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The relative yield of complete fusion and quasifission components for the C-12+Pb-204, F-19+Au-197, Si-30+W-186, and Ca-48+Er-168 reactions which all lead to the compound nucleus Ra-216 are analyzed to calculate the entrance channel effects by comparison of capture, complete fusion, and quasifission cross sections, emission barriers (B-fus*,B-qf), as well as complete fusion probability estimated by statistical method within the framework of the dinuclear system model. The difference among complete fusion probabilities calculated by the dinuclear system model for different entrance channels can be explained by the hindrance to complete fusion due to the larger inner fusion barrier B-fus* for the transformation of the dinuclear system into a compound nucleus and the increase of the quasifission contribution due to the decreasing of the emission barrier B-qf of quasifission as a function of the angular momentum. Although these reactions with different entrance channels populate the same compound nucleus Ra-216 at similar excitation energies, the model predicts the negligible quasifission probability for reactions having higher entrance channel mass asymmetry and the dominant decay channel is complete fission. For reactions induced by massive projectiles such as Si and Ca having lower entrance channelmass asymmetry, the quasifission component is dominant in the evolution of dinuclear system, and the fusion process is extremely hindered.
机译:所有导致化合物的C-12 + Pb-204,F-19 + Au-197,Si-30 + W-186和Ca-48 + ER-168反应的完全融合和Quasifission组分的相对产量分析核RA-216通过比较捕获,完全融合和Quasififach横截面,发射屏障(B-FUS *,B-QF)以及通过统计方法估计的完整融合概率来计算入口信道效应。 DIATIN SYST系统模型的框架。由于较大的内熔屏障B-FU *用于将二核系统转化为复合核和增加,所以由不同入口通道的Diutcle System模型计算的完全融合概率之间的差异可以解释为完全融合。由于角动量的函数的Quasififim的排放屏障B-QF减小,Quasifisif贡献。尽管在类似的入口通道中的这些反应填充相同的复合核RA-216,但是该模型预测具有较高入口通道质量不对称的反应的可忽略的季屈概率,并且优势衰减通道完全裂变。对于由具有较低入口通道不对称的Si和Ca诱导的大规模射弹诱导的反应,Quasifime组分在进核系统的演变中显着,并且融合过程非常受阻。

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