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Collective clusterization approach to investigate the relevance of deformation effects in Sn radioactivity

机译:集体集群化方法探讨SN放射性变形效应的相关性

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.The role of deformations and orientations is studied in cluster decays of various radioactive nuclei leading to doubly magic Sn-100 or Sn-132 daughter nucleus, using the preformed cluster model (PCM). This model treats the cluster emission process via tunnelling across the potential barrier, the cluster/fragment being preformed with a relative probability P0. With the incorporation of deformation and orientation effects, the fragmentation potential, the penetration path and related barrier characteristics get significantly modified, due to which both the preformation probability P0 and penetrability P of the emitting cluster get influenced. The calculated half-lives of the decaying clusters calculated using PCM are found to be within the upper limits of the present experiments. The influence of deformations and orientations on Sn radioactivity is also seen in terms of various barrier characteristics such as barrier modification, barrier height, etc. Moreover, the role of different nuclear proximity potentials, i.e., Prox 77, Prox 88 and Prox 00, is analyzed in the context of potential energy surfaces (PES) in the ground-state decay of parent nucleus. The behavior of PES is explored including, as well as without including, the shell corrections in the binding energies, which in turn help to explore the importance of doubly magic closed shell configuration of daughter and cluster nuclei. The possible role of higher order multipole deformations (i.e., up to 4i) is also analyzed in view of the fragmentation path and barrier tunnelling characteristics.
机译:。使用预先形成的聚类模型(PCM),在各种放射性核的集群衰减中研究了变形和取向的作用,导致双魔术Sn-100或Sn-132核心。该模型通过隧道跨越电位屏障对簇发射过程进行处理,簇/片段以相对概率P0预先形成。通过掺入变形和取向效果,碎裂电位,渗透路径和相关屏障特性得到显着修改,因为发射簇的预先形成概率P0和渗透性P受到影响。发现使用PCM计算的衰变簇的计算半衰期位于本实验的上限内。在诸如屏障修改,屏障高度等的各种屏障特性方面,还可以看到变形和方向对Sn放射性的影响。此外,不同的核接近电位,即Prox 77,Prox 88和Prox 00的作用是在母细胞核的地态衰减中的潜在能量表面(PES)的背景下分析。探讨了PE的行为,包括以及绑定能量中的外壳校正,反过来有助于探讨女儿和群核的双重魔法封闭壳体配置的重要性。考虑到碎片路径和屏障隧穿特性,还分析了高阶多极变形的可能作用(即,最多4I)。

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