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DIRAC PHENOMENOLOGY AND NUCLEAR SINGLE-PARTICLE STATES

机译:DIRAC现象学和核单粒子态

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This paper is concerned with the application of a relativistic shell model to the study of nuclear single-particle states. This relativistic model is applied to medium and heavy nuclei and shown to reproduce satisfactorily the single-particle energies and the rms radii. Energy-independent potentials give a reasonable account of the experimental binding energies, but the empirical analysis of the energy dependence of the potentials reveals a Fermi-surface anomaly. The parameters of the model are also analysed and found to vary systematically with both energy and mass number. The relativistic model is then reformulated in terms of folded-model potentials. The single-particle spectrum and charge rms radius of Ca-40 are reasonably reproduced, with an energy- and density-independent nucleon-nucleon force, and their sensitivity to the model parameters is studied. [References: 14]
机译:本文涉及相对论壳模型在核单粒子态研究中的应用。该相对论模型适用于中核和重核,并且可以令人满意地重现单粒子能量和均方根半径。与能量无关的势能合理地说明了实验的结合能,但是对势能的能量依存性的经验分析揭示了费米表面异常。还分析了模型的参数,发现该参数随能量和质量数而系统地变化。然后根据折叠模型的潜力重新构造相对论模型。合理地复制了Ca-40的单粒子光谱和电荷均方根半径,并具有与能量和密度无关的核子-核子力,并且研究了它们对模型参数的敏感性。 [参考:14]

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