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Coupled Cluster as an Impurity Solver for Green’s Function Embedding Methods

机译:耦合簇作为绿色功能嵌入方法的杂质求解器

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We investigate the performance of Green’s function coupled cluster singles and doubles (CCSD) method as a solver for Green’s function embedding methods. To develop an efficient CC solver, we construct the one-particle Green’s function from the coupled cluster (CC) wave function based on the non-Hermitian Lanczos algorithm. The major advantage of this method is that its scaling does not depend on the number of frequency points. We have tested the applicability of the CC Green’s function solver in the weakly to strongly correlated regimes by employing it for a half-filled one-dimensional (1D) Hubbard model projected onto a single-site impurity problem and a half-filled two-dimensional (2D) Hubbard model projected onto a four-site impurity problem. For the 1D Hubbard model, for all interaction strengths, we observe an excellent agreement with the full configuration interaction (FCI) technique, both for the self-energy and spectral function. For the 2D Hubbard, we have employed an open-shell version of the current implementation and observed some discrepancies from FCI in the strongly correlated regime. Finally, on an example of a small ammonia cluster, we analyze the performance of Green’s function CCSD solver within the Self-Energy Embedding Theory (SEET) with Hartree–Fock (HF) and Green’s Function second order (GF2) for the treatment of the environment.
机译:我们调查绿色功能耦合群集单打和双打(CCSD)方法作为绿色功能嵌入方法的求解器的性能。为了开发高效的CC求解器,我们基于非Hermitian Lanczos算法构建来自耦合集群(CC)波功能的单粒子绿色功能。这种方法的主要优点是其缩放不依赖于频率点的数量。通过采用将其投射到单个站点杂质问题的半填充一维(1D)喧嚣的模型和半填充二维(2D)哈贝德模型投射到四个站点杂质问题。对于1D Hubbard模型,对于所有交互优势,我们遵守自我能量和光谱功能的完整配置交互(FCI)技术的良好协议。对于2D Hubbard,我们使用了当前实施的开放式壳版本,并在强相关的政权中观察到FCI的一些差异。最后,在一个小氨簇的示例中,我们分析了与Hartree-Fock(HF)和绿色的函数二阶(GF2)在自我能量嵌入理论(SEET)内的绿色功能CCSD求解器的性能进行治疗环境。

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