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Shell-model method for Gamow-Teller transitions in heavy deformed odd-mass nuclei

机译:Gamow-Teller转换的壳模型方法在重型变形奇数核中的转变

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摘要

A shell-model method for calculating Gamow-Teller (GT) transition rates in heavy deformed odd-mass nuclei is presented. The method is developed within the framework of the projected shell model. To implement the computation requirement when many multi-quasiparticle configurations are included in the basis, a numerical advancement based on the Pfaffian formula is introduced. With this new many-body technique, it becomes feasible to perform state-by-state calculations for the GT nuclear matrix elements of beta-decay and electron-capture processes, including those at high excitation energies in heavy nuclei which are usually deformed. The first results, beta-decays of the well-deformed A = 153 neutron-rich nuclei, are shown as the example. The known log(ft) data corresponding to the B(GT(-)) decay rates of the ground state of Nd-153 to the low-lying states of Pm-153 are well described. It is further shown that the B(GT) distributions can have a strong dependence on the detailed microscopic structure of relevant states of both the parent and daughter nuclei.
机译:提出了一种用于计算重型变形奇核核中的游戏柜员(GT)过渡率的壳模型方法。该方法是在投影壳模型的框架内开发的。为了基于许多多Quasiparticle配置,引入基于PFaffian公式的数值进步来实现计算要求。利用这种新的许多体技术,对β衰减和电子捕获过程的GT核基质元素进行状态计算变得可行,包括通常变形的重核中的高励磁能量。作为实施例,示出了第一结果,富含富变形A = 153中子核的β-衰减。很好地描述了与B的B(gt( - ))对应于PM-153的低位状态的B(GT( - ))接地状态的接地状态的已知日志(FT)数据。进一步示出了B(GT)分布可以强烈依赖于父母和女儿核的相关状态的详细微观结构。

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