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Ground state properties of exotic nuclei near Z=40 in the relativistic mean-field theory

机译:相对论平均场理论中Z = 40附近外来原子核的基态性质

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摘要

Study of the ground-state properties of Kr, Sr and Zr isotopes has been performed in the framework of the relativistic mean field (RMF) theory using the recently proposed relativistic parameter set NL-SH. It is shown that the RMF theory provides an unified and excellent description of the binding energies, isotope shifts and deformation properties of nuclei over a large range of isospin in the Z=40 region. It is observed that the RMF theory with the force NL-SH is able to describe the anomalous kinks in isotope shifts in Kr and Sr nuclei, the problem which has hitherto remained unresolved. This is in contrast with the density-dependent Skyrme Hartree-Fock approach which does not reproduce the behaviour of the isotope shifts about shell closure. On the Zr chain we predict that the isotope shifts exhibit a trend similar to that of the Kr and Sr nuclei. The RMF theory also predicts shape coexistence in heavy Sr isotopes. Several dramatic shape transitions in the isotopic chains are shown to be a general feature of nuclei in this region. A comparison of the properties with the available mass models shows that the results of the RMF theory are generally in accord with the predictions of the finite-range droplet model.
机译:Kr,Sr和Zr同位素的基态性质的研究是在相对论平均场(RMF)理论的框架下,使用最近提出的相对论参数集NL-SH进行的。结果表明,RMF理论为Z = 40区域内大范围同位旋上的原子的结合能,同位素位移和形变特性提供了统一而出色的描述。观察到,利用力NL-SH的RMF理论能够描述Kr和Sr原子核的同位素位移的异常扭结,这一问题至今仍未解决。这与依赖密度的Skyrme Hartree-Fock方法形成对比,后者没有重现关于壳封闭的同位素位移的行为。在Zr链上,我们预测同位素位移表现出与Kr和Sr原子核相似的趋势。 RMF理论还预测重质Sr同位素中的形状共存。同位素链中几个戏剧性的形状转变显示为该区域核的一般特征。将性质与可用质量模型进行比较表明,RMF理论的结果通常与有限范围液滴模型的预测一致。

著录项

  • 作者

    Lalazissis, G A; Sharma, M M;

  • 作者单位
  • 年度 1995
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  • 原文格式 PDF
  • 正文语种 eng
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