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Analysis of nuclear structure in the nuclear chart and improvement to the gross theory of beta decay

机译:核图表中核结构分析与β衰减总理论的改进

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摘要

The gross theory, a global method for the calculation of nuclear beta decay, is improved using single-particle treatment. We analyzed the beta-decay channel for the entire region of nuclides and found that the allowed transition is suppressed systematically in the neighborhood of heavier doubly magic nuclei. This is mainly due to the shift of neutron and proton single-particle levels in one major shell, which leads to a change in the spin and parity between parent and daughter nuclei. Under this consideration, the nuclear matrix elements for the allowed transition in the gross theory are suppressed in the above condition. In the vicinity of the doubly magic numbers of neutron-rich nuclides, such as nuclei with Z = 50 and 82, the calculated half-lives are longer than those reported in previous work, where only parity mismatch was considered. In superheavy neutron-rich nuclei with N = 184, the half-lives are predicted to be longer due to the same mechanism.
机译:使用单颗粒处理改善了总理论,用于计算核β腐烂的全局方法。 我们分析了核素整个地区的β腐烂通道,发现允许的过渡在较重的双魔核附近系统地被系统地抑制。 这主要是由于一个主要壳中中子和质子单颗粒水平的偏移,这导致父母和女儿核之间的旋转和平等的变化。 在这一考虑下,在上述条件下抑制了总理论中允许转型的核矩阵元素。 在富含中子富含核的双魔法数附近,如核的核,所以计算的半衰期比以前的工作中报告的半衰期长,其中仅考虑平等错配。 在具有n = 184的过度中子核核中,预测半衰期由于相同的机制而更长。

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