Possible dual bubble-like structure predicted by the relativistic Hartree–Bogoliubov model

S. Åberg, Akhilesh Yadav, A. Shukla
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引用次数: 2

Abstract

Experimental observation of 34Si as a proton bubble nuclei has heated up the interest in the study of exotic bubble shaped nuclei. In this work, some of the potential doubly bubble-like (for proton as well as neutron both simultaneously) cases have been explored using relativistic Hartree–Bogoliubov (RHB) in light mass region, specially around N or Z = 14. Further, the role of pairing and the evolution of new shell gaps around N or Z = 32 and 34 have been investigated, as one moves toward drip lines. This study suggests that the occupancies/vacancies of neutron/proton orbitals for lower angular momentum state plays major role in nuclear structure to create bubble-like structure and 822O14, 1220Mg8 and 1448Si34 may have dual bubble-like structures.
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由相对论Hartree-Bogoliubov模型预测的可能的双泡状结构
对34Si作为质子泡核的实验观察,引起了人们对奇异泡核研究的兴趣。在这项工作中,利用相对论Hartree-Bogoliubov (RHB)在轻质量区域,特别是在N或Z = 14附近,探索了一些潜在的双泡状(质子和中子同时存在)情况。此外,配对的作用和在N或Z = 32和34附近的新壳隙的演变已经被研究,当一个人移动到滴线。本研究表明,低角动量态中子/质子轨道的占位/空位在核结构中起主要作用,形成泡状结构,822O14、1220m8和1448Si34可能具有双泡状结构。
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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