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Extended theory of finite Fermi systems: collective vibrations in closed shell nuclei [Review]

机译:有限费米系统的扩展理论:闭合壳核中的集体振动[综述]

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We review an extension of Migdal's Theory of Finite Fermi Systems which has been developed and applied to collective vibrations in closed shell nuclei in the past 10 years. This microscopic approach is based on a consistent use of the Green function method. Here one considers in a consistent way more complex 1p1hcircle timesphonon configurations beyond the RPA correlations. Moreover, these configurations are not only included in the excited states but also explicitly in the ground states of nuclei. The method has been applied to the calculation of the strength distribution and transition densities of giant electric and magnetic resonances in stable and unstable magic nuclei. Using these microscopic transition densities, cross sections for inelastic electron and alpha scattering have been calculated and compared with the available experimental data. The method also allows one to extract in a consistent way the magnitude of the strength of the various multipoles in the energy regions in which several multipoles overlap. We compare the microscopic transition densities, the strength distributions and the various multipole strengths with their values extracted phenomenologically. (C) 2003 Elsevier B.V. All rights reserved. [References: 159]
机译:我们回顾了Migdal的有限费米系统理论的扩展,该理论已在过去10年中开发并应用于封闭壳核中的集体振动。这种微观方法基于格林函数方法的一致使用。在这里,人们以一致的方式考虑了超出RPA相关性的更复杂的1p1hcircle声子配置。而且,这些构型不仅包括在激发态中,而且还明确地包含在原子核的基态中。该方法已应用于计算稳定和不稳定魔术核中巨电和磁共振的强度分布和跃迁密度。使用这些微观跃迁密度,已计算出非弹性电子和α散射的横截面,并与可用的实验数据进行了比较。该方法还允许人们以一致的方式提取在多个多极重叠的能量区域中各个多极的强度的大小。我们将微观转变密度,强度分布和各种多极强度与从现象学上提取的值进行比较。 (C)2003 Elsevier B.V.保留所有权利。 [参考:159]

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