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利用改进的pn-QRPA模型研究等待点原子核的β衰变性质

β-decay Properties of Waiting-point Nuclei in an Improved pn-QRPA Model

  • 摘要: r-过程等待点原子核的β衰变半衰期对研究宇宙中重元素起源有重要意义。质子-中子准粒子无规相位近似(pn-QRPA)是研究原子核β衰变的重要理论模型。本工作提出了一个改进的 pn-QRPA 模型,系统研究了满壳附近原子核的 β 衰变性质。与之前的工作相比,改进的模型采用了中子数和质子数依赖的新粒子-粒子和粒子-空穴相互作用形式。本工作首先计算了满壳附近一些已知原子核的 β衰变半衰期和 Gamow-Teller 强度分布,发现理论结果与实验数据符合较好,检验了新模型的可靠性。随后,理论预测了 N=50, N=82N=126附近未知的等待点原子核的 β衰变半衰期,如124Mo, 126Ru, 128Pd, 186Nd, 188Sm, 192Dy, 194Er, 196Yb, 198Hf等,预测结果与之前的模型相近。这些结果对未来满壳层附近的r-过程物理研究有参考价值。

     

    Abstract: β-decay half-lives of r-process waiting-point nuclei are the crucial physical data for understanding the origin of heavy elements in the universe. Proton-neutron quasi-particle random phase approximation (pn-QRPA) is an important theoretical model to study nuclear β decays. In this work, we propose an improved pn-QRPA model to systematically study β decays from nuclei near closed shells. Compared with previous works, new forms of particle-particle and particle-hole interactions are adopted in the improved model, which depend on both the neutron number and the proton number. We first validate our new model by calculating β-decay half-lives and Gamow-Teller strength distributions of some known nuclei around closed shells. The theoretical results agree well with experimental data. We then predict the β-decay half-lives of various unknown waiting points nuclei near N=50,~N=824, and N=126, such as 124Mo, 126Ru, 128Pd, 186Nd, 188Sm, 192Dy, 194Er, 196Yb, 198Hf. The predictions are consistent with the previous model. These results are good references for the future physics research of r-process near the closed shell.

     

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