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Correlated transitions in TKE and mass distributions of fission fragments described by 4-D Langevin equation

机译:用4-D Langevin方程描述的TKE的相关跃迁和裂变碎片的质量分布

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We have decomposed to symmetric and asymmetric modes the mass-TKE fission fragment distributions calculated by 4-dimensional Langevin approach and observed how the dominant fission mode and symmetric mode change as functions of $${Z}^{2}/sqrt[3]{A}$$ Z 2 / A 3 of the fissioning system in the actinides and trans-actinide region. As a result, we found that the symmetric mode makes a sudden transition from super-long to super short fission mode around 254Es. The dominant fission modes on the other hand, are persistently asymmetric except for 258Fm, 259Fm and 260Md when the dominant fission mode suddenly becomes symmetric although it returns to the asymmetric mode around 256No. These correlated “twin transitions” have been known empirically by Darleane Hoffman and her group back in 1989, but for the first time we have given a clear explanation in terms of a dynamical model of nuclear fission. More specifically, since we kept the shape model parameters unchanged over the entire mass region, we conclude that the correlated twin transition emerge naturally from the dynamics in 4-D potential energy surface.
机译:我们已经分解了对称的和不对称的模式,通过4维Langevin方法计算得到的TKE裂变质量碎片分布,并观察了主导裂变模式和对称模式如何随着$$ {Z} ^ {2} / sqrt [3]的变化而变化。 ] {A} $$ Z 2/3系和反-系裂变系统的A 3。结果,我们发现对称模式在254Es附近从超长裂变模式突然转变为超短裂变模式。另一方面,当主裂变模式突然恢复对称状态时,尽管它返回到256No附近的非对称模式,但主裂变模式却始终不对称,除了258Fm,259Fm和260Md。达琳·霍夫曼(Darleane Hoffman)和她的小组早在1989年就凭经验知道了这些相关的“孪生转变”,但是,我们首次就核裂变的动力学模型给出了清晰的解释。更具体地说,由于我们在整个质量区域中都保持形状模型参数不变,因此可以得出结论,相关的孪生转变自然是由4-D势能面的动力学产生的。

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