Solutions of the Schrödinger Equation with Hul Neutron Position for Beta (β-) Decay and Neutron Emission

Waleed S. Hwash
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Abstract

The current study is about the structure of 17B, which has been investigated by the Microscopic Cluster Model. The binding energy and neutron position of two valence neutrons of Beta-decay and neutron emission have been calculated. A cluster configuration of the Halo nucleus inspired me to consider all radioisotopes have cluster configuration before the decay process. The Jacobi coordinates has been used to investigated the 17B nucleus. The Jacobi coordinate is a very well technique to describe such as a three-body system or halo structure. The 17B has Borromean property, so it has been defined in T-configuration in this coordinates. The angle in the figure defines an angle of halo neutron motion around the core. The study has considered a deformation of the core as a high influence on the binding of the valence neutrons.
β (β-)衰变和中子发射具有Hul中子位置的Schrödinger方程的解
目前的研究是关于17B的结构,它已经通过微观簇模型进行了研究。计算了β衰变和中子发射的两个价中子的结合能和中子位置。晕核的团簇结构启发我考虑所有放射性同位素在衰变过程之前都有团簇结构。雅可比坐标已被用来研究17B核。雅可比坐标是一种很好的描述三体系统或光晕结构的技术。17B具有博罗米安性质,所以它在这个坐标的t形中被定义。图中的角度定义了晕中子绕核运动的角度。研究认为核的变形对价中子的结合有很大的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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