Generalized Many-Body Perturbation Theory for the Electron Correlation Energy: Multireference Random Phase Approximation via Diagrammatic Resummation

IF 4.6 2区 化学 Q2 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry Letters Pub Date : 2025-03-18 DOI:10.1021/acs.jpclett.5c00258
Yuqi Wang, Wei-Hai Fang, Zhendong Li
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Abstract

Many-body perturbation theory (MBPT) based on Green’s functions and Feynman diagrams provides a fundamental theoretical framework for various ab initio computational approaches in molecular and materials science, including the random phase approximation (RPA) and GW approximation. Unfortunately, this perturbation expansion often fails in systems with strong multireference characters. Extending diagrammatic MBPT to the multireference case is highly nontrivial and remains largely unexplored, primarily due to the breakdown of Wick’s theorem. In this work, we develop a diagrammatic multireference generalization of MBPT for computing correlation energies of strongly correlated systems, by using the cumulant expansion of many-body Green’s functions in place of Wick’s theorem. This theoretical framework bridges the gap between MBPT in condensed matter physics and multireference perturbation theories (MRPT) in quantum chemistry, which had been almost exclusively formulated within time-independent wave function frameworks prior to this work. Our formulation enables the explicit incorporation of strong correlation effects from the outset as in MRPT, while treating residual weak interactions through a generalized diagrammatic perturbation expansion as in MBPT. As a concrete demonstration, we formulate a multireference (MR) extension of the standard single-reference (SR) RPA by systematically resumming generalized ring diagrams, which naturally leads to a unified set of equations applicable to both SR and MR cases. Benchmark calculations on prototypical molecular systems reveal that MR-RPA successfully resolves the well-known failure of SR-RPA in strongly correlated systems. This theoretical advancement paves the way for advancing ab initio computational methods through diagrammatic resummation techniques in future.

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电子相关能的广义多体摄动理论:通过图解恢复的多参考随机相位逼近
基于格林函数和费曼图的多体微扰理论(MBPT)为分子和材料科学中的各种从头计算方法提供了基本的理论框架,包括随机相近似(RPA)和GW近似。不幸的是,这种微扰展开在具有强多参考特性的系统中常常失败。将图解MBPT扩展到多参考情况是非常重要的,并且在很大程度上仍未被探索,主要是由于Wick定理的崩溃。在这项工作中,我们通过使用多体格林函数的累积展开代替威克定理,开发了一种用于计算强相关系统相关能的MBPT的图解多参考推广。该理论框架弥合了凝聚态物理中的MBPT和量子化学中的多参考微扰理论(MRPT)之间的差距,在此工作之前,MRPT几乎完全是在时间无关的波函数框架内制定的。我们的公式能够从一开始就像在MRPT中一样明确地纳入强相关效应,同时通过广义图摄动展开处理剩余的弱相互作用,就像在MBPT中一样。作为一个具体的证明,我们通过系统地恢复广义环图,建立了标准单参考(SR) RPA的多参考(MR)扩展,这自然导致了一组适用于SR和MR情况的统一方程。典型分子体系的基准计算表明,MR-RPA成功地解决了SR-RPA在强相关体系中的失败问题。这一理论进展为将来通过图解恢复技术推进从头计算方法铺平了道路。
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来源期刊
The Journal of Physical Chemistry Letters
The Journal of Physical Chemistry Letters CHEMISTRY, PHYSICAL-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
9.60
自引率
7.00%
发文量
1519
审稿时长
1.6 months
期刊介绍: The Journal of Physical Chemistry (JPC) Letters is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, chemical physicists, physicists, material scientists, and engineers. An important criterion for acceptance is that the paper reports a significant scientific advance and/or physical insight such that rapid publication is essential. Two issues of JPC Letters are published each month.
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