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Microscopic study of shape evolution and some important ground state properties of 190–210Au isotopes
International Journal of Modern Physics E ( IF 1.0 ) Pub Date : 2021-06-24 , DOI: 10.1142/s021830132150049x
Vikesh Kumar 1 , Pankaj Kumar 1 , Virender Thakur 1 , Smriti Thakur 1 , Shashi K. Dhiman 1
Affiliation  

In this paper, we have examined the nuclear structural properties of 190–210Au isotopes within the framework of the Hartree–Fock–Bogoliubov Model. For the theoretical calculations, we have used the UNEDF2 and SKP interactions. The studies include the shape evolution, quadrupole deformation parameter β2, nuclear electric quadrupole moment Q(b), single-particle energy levels, the binding energy per nucleon, nuclear charge radius, neutron rms radius, proton rms radius and neutron skin thickness. To analyze the accuracy of our theoretical results, we have presented the comparative analysis with experimental data and finite-range droplet model calculations. The adequate resemblance with experimental data is supporting our studies. We observe the oblate-prolate shape coexistence for 190Au, 193Au and 195Au using the UNEDF2 interaction.

中文翻译:

190-210Au同位素形状演化和一些重要基态特性的微观研究

在本文中,我们在 Hartree-Fock-Bogoliubov 模型的框架内检查了190-210 Au 同位素的核结构特性。对于理论计算,我们使用了 UNEDF2 和 SKP 交互作用。研究包括形状演化、四极杆变形参数β2、核电四极矩 Q(b)、单粒子能级、每个核子的结合能、核电荷半径、中子 rms 半径、质子 rms 半径和中子表皮厚度。为了分析我们理论结果的准确性,我们提出了与实验数据和有限范围液滴模型计算的比较分析。与实验数据的充分相似性支持了我们的研究。我们使用 UNEDF2 相互作用观察到190 Au、193 Au 和195 Au的扁长形状共存。
更新日期:2021-06-24
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