铋 202 和铋 203 中的磁旋转

IF 3.1 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review C Pub Date : 2024-01-16 DOI:10.1103/physrevc.109.014315
ShuNan Zhao, Duo Chen, Jian Li, Dong Yang
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引用次数: 0

摘要

通过与铅同位素中的类似带进行系统比较以及倾斜轴曲柄协变密度泛函理论(TAC-CDFT)计算,研究了 Bi202 和 Bi203 中的四个磁偶极子带。通过与铅同位素中的磁旋转带进行比较,确定了自旋和构型。四个磁偶极子带的相应构型分别为 πh9/2i13/2s1/2-1⊗νi13/2-1、πh9/2i13/2s1/2-1⊗νi13/2-2(fp)-1 和 πh9/2i13/2s1/2-1⊗νi13/2-1(fp)-1。用 TAC-CDFT 计算的能谱以及自旋和旋转频率之间的关系与现有的实验数据非常吻合,进一步支持了自旋和构型的分配。此外,还研究了质子和中子的变形参数、转变概率以及角矩贡献。这些计算量与实验数据以及与铅同位素的相似性一起,证实了 Bi202 和 Bi203 中这四个磁偶极子带的剪切机制。
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Magnetic rotations inBi202andBi203
Four magnetic dipole bands in Bi202 and Bi203 are investigated by the systematic comparison with similar bands in Pb isotopes and the tilted axis cranking covariant density functional theory (TAC-CDFT) calculations. The spin and configuration are assigned by the comparison with magnetic rotational bands in Pb isotopes. The corresponding configurations are suggested to be πh9/2i13/2s1/21νi13/21, πh9/2i13/2s1/21νi13/22(fp)1, and πh9/2i13/2s1/21νi13/21(fp)1 for the four magnetic dipole bands. The calculated energy spectra and the relation between spin and rotational frequency with TAC-CDFT are in good agreement with available experimental data, further supporting the spin and configuration assignments. The deformation parameters, transition probabilities, and the angular momenta contributions of protons and neutrons are also studied. These calculated quantities, together with the experimental data and the similarity with Pb isotopes, confirm the shear mechanism of these four magnetic dipole bands in Bi202 and Bi203.
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来源期刊
Physical Review C
Physical Review C 物理-物理:核物理
CiteScore
5.70
自引率
35.50%
发文量
0
审稿时长
1-2 weeks
期刊介绍: Physical Review C (PRC) is a leading journal in theoretical and experimental nuclear physics, publishing more than two-thirds of the research literature in the field. PRC covers experimental and theoretical results in all aspects of nuclear physics, including: Nucleon-nucleon interaction, few-body systems Nuclear structure Nuclear reactions Relativistic nuclear collisions Hadronic physics and QCD Electroweak interaction, symmetries Nuclear astrophysics
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