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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quasiparticles in neon using the Faddeev random-phase approximation
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Quasiparticles in neon using the Faddeev random-phase approximation

机译:用Faddeev随机相逼近霓虹灯中的准粒子。

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摘要

The spectral function of the closed-shell neon atom is computed by expanding the electron self-energy through a set of Faddeev equations. This method describes the coupling of single-particle degrees of freedom with correlated two-electron, two-hole, and electron-hole pairs. The excitation spectra are obtained using the random-phase approximation (RPA), rather than the Tamm-Dancoff framework employed in the third-order algebraic diagrammatic construction method. The difference between these two approaches is studied, as well as the interplay between ladder and ring diagrams in the self-energy. Satisfactory results are obtained for the ionization energies as well as the energy of the ground state with the Faddeev RPA scheme, which is also appropriate for the high-density electron gas.
机译:闭壳氖原子的光谱函数通过一组Faddeev方程扩展电子自能来计算。该方法描述了单粒子自由度与相关的两个电子,两个空穴和一个电子空穴对的耦合。使用随机相位近似(RPA)而非三阶代数图解构造方法中使用的Tamm-Dancoff框架获得激发光谱。研究了这两种方法之间的差异,以及自能量中梯形图和环形图之间的相互作用。使用Faddeev RPA方案获得的电离能以及基态能量均获得令人满意的结果,这也适用于高密度电子气。

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