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β-decay properties of neutron-deficient Pt, Hg, and Pb isotopes

机译:中子缺乏Pt,Hg和Pb同位素的β-衰减性质

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Neutron-deficient isotopes in the lead region are well established examples of the shape coexistence phenomenon in nuclei. In this work, bulk and decay properties, including deformation energy curves, charge mean square radii, Gamow-Teller (GT) strength distributions, and β-decay half-lives, are studied in neutron-deficient Pt, Hg, and Pb isotopes. The nuclear structure involved is described microscopically from deformed quasiparticle random-phase approximation calculations with residual interactions in both particle-hole and particle-particle channels, performed on top of a self-consistent deformed quasiparticle Skyrme Hartree-Fock basis. The sensitivity to deformation of the GT strength distributions in those isotopes is proposed as an additional complementary signature of the nuclear shape. The β-decay half-lives resulting from the GT strength distributions are compared to experiment to demonstrate the ability of the method.
机译:铅区中的中子缺陷同位素是核中形状共存现象的公正实例。在这项工作中,在中子缺乏Pt,Hg和Pb同位素中研究了散装和衰减性能,包括变形能量曲线,充电均方半径,Gamow-Teller(GT)强度分布和β-衰减半衰期。涉及所涉及的核结构从变形的Quasiparticle随机相近似计算,在粒子孔和颗粒通道中具有残留相互作用,在自一致的变形Quasiparticle Skyrme Hartree-Fock基础上进行。提出了这些同位素中GT强度分布的变形的敏感性,作为核形状的额外互补特征。将GT强度分布产生的β衰减半衰期与实验进行比较,以证明该方法的能力。

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