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July 25, 2017Physical review. B./Physical review. B180 citationsOpen Access

Compressing Green's function using intermediate representation between imaginary-time and real-frequency domains

HSHiroshi ShinaokaJOJunya OtsukiMOMasayuki Ohzeki

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Abstract

Model-independent compact representations of imaginary-time data are presented in terms of the intermediate representation (IR) of analytical continuation. We demonstrate the efficiency of the IR through continuous-time quantum Monte Carlo calculations of an Anderson impurity model. We find that the IR yields a significantly compact form of various types of correlation functions. This allows the direct quantum Monte Carlo measurement of Green's functions in a compressed form, which considerably reduces the computational cost and memory usage. Furthermore, the present framework will provide general ways to boost the power of cutting-edge diagrammatic/quantum Monte Carlo treatments of many-body systems.

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Shinaoka et al. (2017) studied this question.

synapsesocial.com/papers/6a08db4b1b91a3b1ea5b68aehttps://doi.org/10.1103/physrevb.96.035147
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