Loos Pierre-François, Marie Antoine, Ammar Abdallah
Laboratoire de Chimie et Physique Quantiques (UMR 5626), Université de Toulouse, CNRS, UPS, France.
Faraday Discuss. 2024 Nov 6;254(0):240-260. doi: 10.1039/d4fd00037d.
The cumulant expansion of the Green's function is a computationally efficient beyond-GW approach renowned for its significant enhancement of satellite features in materials. In contrast to the ubiquitous GW approximation of many-body perturbation theory, cumulant expansions performed on top of GW (GW + C) have demonstrated the capability to handle multi-particle processes by incorporating higher-order correlation effects or vertex corrections, yielding better agreements between experiment and theory for satellite structures. While widely employed in condensed matter physics, very few applications of GW + C have been published on molecular systems. Here, we assess the performance of this scheme on a series of 10-electron molecular systems (Ne, HF, HO, NH, and CH) where full configuration interaction estimates of the outer-valence quasiparticle and satellite energies are available.
格林函数的累积量展开是一种计算效率高的超越GW的方法,以其显著增强材料中的卫星特征而闻名。与多体微扰理论中普遍存在的GW近似不同,在GW之上进行的累积量展开(GW + C)已证明能够通过纳入高阶相关效应或顶点修正来处理多粒子过程,从而在卫星结构的实验和理论之间产生更好的一致性。虽然GW + C在凝聚态物理中被广泛应用,但在分子系统上发表的GW + C应用却很少。在这里,我们评估了该方案在一系列10电子分子系统(Ne、HF、HO、NH和CH)上的性能,这些系统的外层价准粒子和卫星能量有全组态相互作用估计值。