Study of Nuclear Structure for 36Si Isotope by Using Shell Model with Several Interactions

A. K. Hasan, Wafaa Al-mudhafar
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引用次数: 1

Abstract

In this study, the nuclear shell model was applied to calculate the energy levels and reduced electric quadruple transition probability B(E2) for 36Si isotope using the OXBASH code within (1d3/2, 2s1/2, 2p3/2, 1f7/2) model space and using (HASN, ZBM2 and VPTH) interactions, As this isotope contains eight neutrons outside 28Si  core in the region and when comparing the results of this study with the values. Available process compatibility was acceptable. There was good agreement at level 2+1, and angular momentum and parity were confirmed for levels 4+, 6+, and for all interactions, and the value of B(E2) corresponds well with the only practical value available for the transition .
用壳层模型研究36Si同位素的核结构
在本研究中,由于该同位素在28Si核芯外区域含有8个中子,并将本研究结果与数值进行了比较,因此利用核壳模型在(1d3/2, 2s1/2, 2p3/2, 1f7/2)模型空间内,利用(HASN, ZBM2和VPTH)相互作用,利用OXBASH代码计算了36Si同位素的能级和降电四重跃迁概率B(E2)。可用的过程兼容性是可接受的。在能级2+1上有很好的一致性,角动量和宇称在能级4+、6+和所有的相互作用上都得到了证实,B(E2)的值与跃迁的唯一实用值很好地对应。
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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