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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Effect of resonant continuum on pairing correlations in the relativistic approach
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Effect of resonant continuum on pairing correlations in the relativistic approach

机译:相对论方法中共振连续谱对配对相关性的影响

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摘要

A proper treatment of the resonant continuum is to take account of not only the energy of the resonant state, but also its width. The effect of resonant states on pairing correlations is presented in the framework of the relativistic mean-field theory plus Bardeen-Cooper-Schrieffer (BCS) approximation with a constant pairing strength. The study is performed in an effective Lagrangian with the parameter set NU for neutron-rich even-even Ni isotopes. Results show that the contribution of the proper treatment of the resonant continuum to pairing correlations for those nuclei close to the neutron drip line is important. The pairing gaps, Fermi energies, pairing correlation energies, and binding energies are considerably affected by a proper consideration of the width of resonant states. The problem of unphysical particle gas, which may appear in the calculation of the traditional mean field plus BCS method for nuclei in the vicinity of the drip line could be well overcome when the pairing correlation is performed by using the resonant states instead of the discretized states in the continuum.
机译:对共振连续体的适当处理不仅要考虑共振状态的能量,还要考虑其宽度。在相对论平均场理论和具有恒定配对强度的Bardeen-Cooper-Schrieffer(BCS)近似的框架中,展示了共振态对配对相关性的影响。该研究是在有效拉格朗日方程组中进行的,参数集为NU,用于富含中子的均匀Ni同位素。结果表明,对于连续中子滴线附近的核,正确处理共振连续体对配对相关性的贡献很重要。配对间隙,费米能,配对相关能和结合能受共振态宽度的适当影响而受到很大影响。当使用共振态而不是离散态进行配对相关时,可以很好地克服非物理粒子气体的问题,这种问题可能出现在传统的平均场加BCS方法的计算中。在连续体中。

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