Random Phase Approximation in Relativistic Approach

Ma Zhong-yu, Yang Ding, Tian Yuan, Cao Li-gang
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Abstract

Some special issues of the random phase approximation(RPA) in the relativistic approach are reviewed. A full consistency and proper treatment of coupling to the continuum are responsible for the successful application of the RPA in the description of dynamical properties of finite nuclei. The fully consistent relativistic RPA(RRPA) requires that the relativistic mean filed (RMF) wave function of the nucleus and the RRPA correlations are calculated in a same effective Lagrangian and the consistent treatment of the Dirac sea of negative energy states. The proper treatment of the single particle continuum with scattering asymptotic conditions in the RMF and RRPA is discussed. The full continuum spectrum can be described by the single particle Green’s function and the relativistic continuum RPA is established. A separable form of the paring force is introduced in the relativistic quasiparticle RPA.
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相对论方法中的随机相位逼近
综述了相对论方法中随机相位近似(RPA)的一些特殊问题。充分的一致性和对连续体耦合的适当处理是RPA在有限核动力学性质描述中成功应用的原因。完全一致相对论RPA(RRPA)要求在相同的有效拉格朗日量下计算原子核的相对论平均场(RMF)波函数和RRPA相关性,并对负能态狄拉克海进行一致的处理。讨论了在RMF和RRPA中对具有散射渐近条件的单粒子连续体的适当处理。用单粒子格林函数描述全连续谱,建立了相对论连续谱RPA。在相对论性准粒子RPA中引入了对力的一种可分离形式。
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