Effect of Oriented Nuclei on the Competing Modes of α and One-Proton Radioactivities in the Vicinity of Z = 82 Shell Closure

Sarbjeet Kaur, BirBikram Singh, S. Patra
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Abstract

The purpose of the present work is to investigate the alpha (α) emission as competing mode of one proton emission using the preformed cluster decay model (PCM). PCM is based on the quantummechanical tunneling mechanism of penetration of the preformed fragments through a potential barrier, calculated within WKB approximation. To explore the competing aspects of α and one proton radioactivity, we have chosen emitters present immediately above and below the Z = 82 shell closure i.e. 177Tl and 185Bi by taking into account the effects of deformations (β2) and orientations of outgoing nuclei. The minimized values of fragmentation potential and maximized values of preformation probability (P0) for proton and alpha fragment demonstrated the crucial role played by even Z - even N daughter and shell closure effect of Z = 82 daughter, in 177Tl and 185Bi, respectively. The higher values of P0 of the one proton further reveal significance of nuclear structure in the proton radioactivity. From the comparison of proton and α decay, we see that the former is heavily dominating with larger values of P0 in comparison to the later. Theoretically calculated half-lives of one proton and α emission for spherical and deformed considerations have also been compared with available experimental data.
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取向核对Z = 82壳层闭合附近α和单质子放射性竞争模式的影响
本研究的目的是利用预成簇衰变模型(PCM)研究α (α)发射作为单质子发射的竞争模式。PCM是基于预制碎片穿透势垒的量子力学隧道机制,在WKB近似下计算。为了探索α和单质子放射性的相互竞争的方面,我们考虑到变形(β2)和出射核取向的影响,选择了直接出现在Z = 82壳层闭合上方和下方的发射体,即177Tl和185Bi。在177Tl和185Bi中,质子和α碎片的破碎势最小值和预形成概率P0最大值分别表明了偶Z -偶N子和Z = 82子的壳层闭合效应在其中起着至关重要的作用。单个质子的P0值较高,进一步揭示了核结构在质子放射性中的重要意义。从质子和α衰变的比较中,我们看到前者占主导地位,其P0值比后者大。理论计算的单质子半衰期和考虑球形和变形的α发射的半衰期也与现有的实验数据进行了比较。
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