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Periodic orbits and shell structure in octupole deformed potentials

机译:八极形变势的周期轨道和壳结构

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摘要

The effect of an octupole term in a quadrupole deformed single particle potential is studied from the classical and quantum mechanical view point. Whereas the problem is nonintegrable, the quantum mechanical spectrum nevertheless shows some shell structure in the superdeformed prolate case for particular, yet fairly large octupole strengths; for spherical or oblate deformation the shell structure disappears. This result is associated with classical periodic orbits which are found by employing the removal of resonances method; this approximation method allows determination of the shape of the orbit and of the approximate octupole coupling strength for which it occurs. The validity of the method is confirmed by solving numerically the classical equations of motion. The quantum mechanical shell structure is analysed using the particle number dependence of the fluctuating part of the total energy. In accordance with the classical result this dependence turns out to be very similar for a superdeformed prolate potential plus octupole term and a hyperdeformed prolate potential without octupole term. In this way the shell structure is explained at least for some few hundred levels. The Fourier transform of the level density further corroborates these findings.
机译:从经典和量子力学的角度研究了八极项对四极变形单粒子电势的影响。尽管该问题是不可积分的,但量子力学光谱仍然显示出在超变形扁壳情况下的某些壳结构,尽管该壳结构具有相当大的八极强度。对于球形或扁圆形变形,壳结构消失。该结果与经典周期轨道有关,该经典周期轨道是通过采用消除共振的方法发现的。该近似方法允许确定轨道的形状以及发生该轨道的近似八极耦合强度。该方法的有效性通过数值求解经典运动方程式得到证实。使用总能量波动部分的粒子数依赖性来分析量子力学壳结构。根据经典结果,对于超形变的扁形电位加八极子项和超形变的扁形电位而没有八极子项,这种依赖关系非常相似。这样,至少在几百个层次上解释了壳结构。水平密度的傅立叶变换进一步证实了这些发现。

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