GW with hybrid functionals for large molecular systems

Tucker Allen, Minh Nguyen, Daniel Neuhauser
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Abstract

A low-cost approach for stochastically sampling static exchange during time-dependent Hartree–Fock-type propagation is presented. This enables the use of an excellent hybrid density functional theory (DFT) starting point for stochastic GW quasiparticle energy calculations. Generalized Kohn–Sham molecular orbitals and energies, rather than those of a local-DFT calculation, are used for building the Green function and effective Coulomb interaction. The use of an optimally tuned hybrid diminishes the starting point dependency in one-shot stochastic GW, effectively avoiding the need for self-consistent GW iterations.
大型分子系统的混合函数 GW
本文介绍了一种在随时间变化的哈特里-福克型传播过程中对静态交换进行随机取样的低成本方法。这样就能利用一个出色的混合密度泛函理论(DFT)起点进行随机 GW 准粒子能量计算。在建立格林函数和有效库仑相互作用时,使用的是广义 Kohn-Sham 分子轨道和能量,而不是局部-DFT 计算的分子轨道和能量。使用经过优化调整的混合方法可以减少单次随机 GW 的起点依赖性,从而有效避免自洽 GW 迭代的需要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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