Description of the negative- and positive-parity states in odd-A Radon and Francium isotopes within the framework of the interacting Boson–Fermion model

Musa M. Mahdi
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Abstract

The negative- and positive-parity states and electromagnetic transitions for [Formula: see text]Rn and [Formula: see text]Fr nuclei have been studied by using the Interacting Boson–Fermion Approximation (IBFM-1). Based on our calculations, the spin assignments for some states with uncertain spin have been done. Energy spectra, electromagnetic transition probabilities and branching ratios in these isotopes are calculated and compared with available experimental data. The wave functions are analyzed to understand the nuclear structure. In addition, some predictions of levels that have no experimental data are presented such as spin and electromagnetic transitions. Good results were obtained with a decrease in the collectivity properties, especially for the most neutron-deficient isotopes.
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在相互作用玻色子-费米子模型的框架内描述奇数a氡和钫同位素的负和正宇称态
用相互作用玻色子-费米子近似(IBFM-1)研究了Rn和Fr核的负、正宇称态和电磁跃迁。在此基础上,对一些自旋不确定的态进行了自旋赋值。计算了这些同位素的能谱、电磁跃迁概率和分支比,并与现有实验数据进行了比较。通过对波函数的分析来了解原子核的结构。此外,还提出了一些没有实验数据的能级的预测,如自旋和电磁跃迁。在总体特性降低的情况下获得了良好的结果,特别是对于大多数中子亏缺的同位素。
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