论文标题
将顶点校正嵌入GW自能源:理论,实施和观点
Embedding vertex corrections in GW self-energy: theory, implementation, and outlook
论文作者
论文摘要
绿色功能形式主义中的顶点函数($γ$)封装了有关所有高阶电子电子相互作用的信息,而不是密度波动介导的信息。在本文中,我们提出了一种有效的方法,该方法将顶点校正嵌入到隔离和周期性系统的一次性$ gw $相关性中。通过提出的分离式 - 统计 - 分组程序构建了顶点校正的自能力:电子希尔伯特空间分为一个活跃空间,其正交补体表示为“静止”;活动成分与其他不同于其余的有效的哈密顿量相关。顶点校正是由重新依赖时间依赖的非本地交换相互作用引入的。通过调整自洽后处理圈中的重新缩放因素,可以进一步更新对自我能源的直接$γ$校正。我们的嵌入方法主要在供体 - 受体电荷转移系统上进行测试。嵌入的顶点效应始终如一,并显着纠正间隙边缘状态的准粒子能量。在单次$ GW $近似值时,基本差距通常会改善1-3 eV。此外,我们在计算扩展固体时提供了(嵌入式)顶点校正的应用前景。
The vertex function ($Γ$) within the Green's function formalism encapsulates information about all higher-order electron-electron interaction beyond those mediated by density fluctuations. Herein, we present an efficient approach that embeds vertex corrections in the one-shot $GW$ correlation self-energy for isolated and periodic systems. The vertex-corrected self-energy is constructed through the proposed separation-propagation-recombination procedure: the electronic Hilbert space is separated into an active space and its orthogonal complement denoted as the "rest"; the active component is propagated by a space-specific effective Hamiltonian different from the rest. The vertex corrections are introduced by a rescaled time-dependent non-local exchange interaction. The direct $Γ$ correction to the self-energy is further updated by adjusting the rescaling factor in a self-consistent post-processing circle. Our embedding method is tested mainly on donor-acceptor charge-transfer systems. The embedded vertex effects consistently and significantly correct the quasiparticle energies of the gap-edge states. The fundamental gap is generally improved by 1-3 eV upon the one-shot $GW$ approximation. Furthermore, we provide an outlook for applications of (embedded) vertex corrections in calculations of extended solids.