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Recent progresses on the pseudospin symmetry in single particle resonant states

机译:单粒子共振状态下伪旋流对称性的最新进展

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The pseudospin symmetry (PSS) is a relativistic dynamical symmetry directly connected with the small component of the nucleon Dirac wave function. Much effort has been made to study this symmetry in bound states. Recently, a rigorous justification of the PSS in single particle resonant states was achieved by examining the asymptotic behaviors of the radial Dirac wave functions:The PSS in single particle resonant states in nuclei is conserved exactly when the attractive scalar and repulsive vector potentials have the same magnitude but opposite sign. Several issues related to the exact conservation and breaking mechanism of the PSS in single particle resonances were investigated by employing spherical square well potentials in which the PSS breaking part can be well isolated in the Jost function. A threshold effect in the energy splitting and an anomaly in the width splitting of pseudospin partners were found when the depth of the square well potential varies from zero to a finite value.
机译:假螺旋对称性(PSS)是一种与核子云波函数的小部件直接连接的相对论动态对称。已经努力研究了绑定状态的这种对称性。在单粒子共振态的PSS在细胞核中是保守的确切时间的有吸引力的标量和排斥力矢量势具有相同的:最近,在单一粒子共振态的PSS的严格的理由是通过检查的径向狄拉克波函数的渐近行为实现幅度但相反的标志。通过采用球形方形井电位研究了与单颗粒共振中PSS的确切保护和断裂机制有关的几个问题,其中PSS断开部分可以很好地分离在JOST功能中。当方形阱电位的深度从零变为有限值时,发现能量分裂中的阈值效应和宽度分裂的宽度分裂中的异常。

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