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首页> 外文期刊>Bulletin of the Russian Academy of Sciences. Physics >Dynamical Symmetries in Shell and Collective Models of Nuclear Structure
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Dynamical Symmetries in Shell and Collective Models of Nuclear Structure

机译:核结构壳体和集体模型中的动力学对称

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摘要

The dynamical symmetries in the algebraic shell model and the collective Interacting Vector Boson Model (IVBM) realized in terms of fermion and boson creation and annihilation operators are investigated. The obtained analytic eigen-energies in both models are compared with the experimental ones and the strengths of the corresponding terms of the model Hamiltonians are evaluated in both cases. In the algebraic realization of the Pairing plus Quadrupole Shell Model the correlations and transition between the quadrupole and pairing phases—dynamical symmetries are investigated in application to nuclear systems in the first few light shells. In the symplectic extension of the IVBM the spectra of heavy even-even nuclei with transitional between rotational and vibrational character is well reproduced. The algebraic connections between dynamical symmetries of the nuclear collective spectra and the ordering of the low-lying states with fixed angular momentum permits a reasonable and experimentally proved prediction of the position of the 0~(+)?band heads of the collective bands. The models based on dynamical symmetries give an elegant and simple way to describe the complex spectra of nuclei with different shapes.
机译:研究了用费米子和玻色子产生和湮灭算符实现的代数壳模型和集体相互作用矢量玻色子模型(IVBM)的动力学对称性。将两种模型中得到的解析本征能量与实验结果进行了比较,并对两种情况下模型哈密顿量相应项的强度进行了评估。在配对加四极壳层模型的代数实现中,研究了四极相和配对相动力学对称性之间的关联和跃迁,并将其应用于前几个轻壳层中的核系统。在IVBM的辛延拓中,重偶偶核的光谱在转动和振动特性之间发生了过渡,得到了很好的再现。原子核集体谱的动力学对称性与具有固定角动量的低能态的有序性之间的代数联系,允许对0~(+)?集体乐队的团长。基于动力学对称性的模型为描述不同形状原子核的复杂光谱提供了一种优雅而简单的方法。

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