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Density-dependent deformed relativistic Hartree-Bogoliubov theory in continuum

机译:连续体中依赖密度的变形相对论性Hartree-Bogoliubov理论

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摘要

The deformed relativistic Hartree-Bogoliubov theory in continuum with the density-dependent meson-nucleon couplings is developed. The formulism is briefly presented with the emphasis on handling the density-dependent couplings, meson fields, and potentials in an axially deformed system with the partial wave method. Taking the neutron-rich nucleus 38Mg as an example, the newly developed code is verified by the spherical relativistic continuum Hartree-Bogoliubov calculations, where only the spherical components of the densities are considered. When the deformation is included self-consistently, it is shown that the spherical components of density-dependent coupling strengths are dominant, while the contributions from low-order deformed components are not negligible.
机译:建立了变形相对论的Hartree-Bogoliubov理论,并提出了依赖于密度的介子-核子耦合的连续体。简要介绍了该公式,重点是通过分波方法处理轴向变形系统中与密度有关的耦合,介子场和电势。以富含中子的核38Mg为例,通过球相对论连续体Hartree-Bogoliubov计算验证了新开发的代码,其中仅考虑了密度的球形分量。当自洽地包含变形时,表明密度依赖的耦合强度的球形分量占主导,而低阶变形分量的贡献却不可忽略。

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