An improved microscopic core–quasiparticle coupling model for spectroscopy of odd-mass nuclei with octupole correlations

Xin Zhao, Zhipan Li, Dario Vretenar
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Abstract

The microscopic core–quasiparticle coupling model for odd-A nuclei with octupole correlations is extended to include the monopole, quadrupole and octupole couplings between the core and the odd nucleon, based on the framework of covariant density functional theory. The model is tested in a study of low-lying excitation spectra for the odd-A nucleus [Formula: see text]Ra. Theoretical results, e.g., the parity doublets, interband [Formula: see text] and intraband [Formula: see text], are in very good agreement with the available data. In particular, the description of signature splitting in the ground-state band has been improved. This method provides a very useful tool for a systematic study of low-energy spectra in odd-mass actinides with octupole correlations.
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一种改进的八极相关奇质量原子核光谱的微观核-准粒子耦合模型
基于协变密度泛函理论的框架,将具有八极子关联的奇a核微观核-准粒子耦合模型扩展到包括核与奇核子之间的单极子、四极子和八极子耦合。该模型在奇a核的低洼激发谱研究中得到了验证[公式:见原文]。理论结果,如奇偶态、带间[公式:见文]和带内[公式:见文],与现有数据非常吻合。特别地,改进了基态波段信号分裂的描述。该方法为系统地研究具有八极相关的奇质量锕系元素的低能谱提供了一个非常有用的工具。
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