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GW approximations and vertex corrections on the Keldysh time-loop contour: Application for model systems at equilibrium

机译:凯尔迪什时间循环轮廓上的GW逼近和顶点校正:处于平衡状态的模型系统的应用

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We study the effects of self-consistency and vertex corrections on different GW-based approximations for model systems of interacting electrons. For dealing with the most general case, we use the Keldysh time-loop contour formalism to evaluate the single-particle Green's functions. We provide the formal extension of Hedin's GW equations for the Green's function in the Keldysh formalism. We show an application of our formalism to the plasmon model of a core electron within the plasmon-pole approximation. We study in detail the effects of the diagrammatic perturbation expansion of the core-electron/plasmon coupling on the spectral functions in the so-called S model. The S model provides an exact solution at equilibrium for comparison with the diagrammatic expansion of the interaction. We show that self-consistency is essential in GW-based calculations to obtain the full spectral information. The second-order exchange diagram (i.e., a vertex correction) is also crucial to obtain the good spectral description of the plasmon satellites. We corroborate these results by considering conventional equilibrium GW-based calculations for the pure jellium model. We find that with no second-order vertex correction, one cannot obtain the full set of plasmon side-band resonances. We also discuss in detail the formal expression of the Dyson equations obtained for the time-ordered Green's function at zero and finite temperature from the Keldysh formalism and from conventional equilibrium many-body perturbation theory.
机译:我们研究了相互作用的电子模型系统的自洽和顶点校正对不同基于GW的逼近的影响。为了处理最一般的情况,我们使用Keldysh时间循环轮廓形式主义来评估单粒子Green函数。我们为格林在凯尔迪什形式主义中的功能提供了Hedin GW方程的形式扩展。我们展示了形式主义在等离激元极点近似内的核心电子的等离激元模型中的应用。我们详细研究了核心电子/等离子体耦合的图解扰动展开对所谓S模型中谱函数的影响。 S模型在平衡时提供了精确的解,可以与相互作用的图解展开进行比较。我们表明,自洽在基于GW的计算中获得完整的光谱信息至关重要。二阶交换图(即顶点校正)对于获得等离激元卫星的良好光谱描述也至关重要。通过考虑传统的基于纯GW模型的基于平衡GW的计算,我们证实了这些结果。我们发现,没有二阶顶点校正,就无法获得完整的等离激元边带共振。我们还详细讨论了凯氏定理和传统的平衡多体摄动理论中,为零温度和有限温度下的时间有序格林函数获得的戴森方程的形式表达式。

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