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Smooth Self-energy in the Exact-diagonalization-based Dynamical Mean-field Theory: Intermediate-representation Filtering Approach

机译:基于精确对角线化的动态平均场理论中的平滑自能:中间译码滤波方法

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摘要

We propose a method for estimating smooth real-frequency self-energy in the dynamical mean-field theory with the finite-temperature exact diagonalization (DMFT-ED). One of the benefits of DMFT-ED calculations is that one can obtain real-frequency spectra without a numerical analytic continuation. However, these spectra are spiky and strongly depend on the way to discretize a continuous bath (e.g., the number of the bath sites). The present scheme is based on a recently proposed compact representation of imaginary-time Green's functions, the intermediate representation (IR). The projection onto the IR basis acts as a noise filter for the discretization errors in the self-energy. This enables to extract the physically relevant part from the noisy self-energy. We demonstrate the method for single-site DMFT calculations of the single-band Hubbard model. We also show the results can be further improved by numerical analytic continuation.
机译:我们提出了一种估计动态平均场理论中平稳实频自能的方法,具有有限温度精确对角线(DMFT-ED)。 DMFT-ED计算的一个好处是,可以在没有数值分析延续的情况下获得实际频谱。 然而,这些光谱是尖锐的并且强烈取决于离散浴的方式(例如,沐浴位点的数量)。 本方案基于最近提出的假想时绿色功能的紧凑表示,中间表示(IR)。 在IR基础上的投影充当自能的离散化误差的噪声滤波器。 这使得能够从嘈杂的自我能量中提取物理相关部分。 我们展示了单频段隆堡模型的单站点DMFT计算方法。 我们还显示了通过数值分析延续进一步改善了结果。

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