Symmetric estimator for discrete self-energy of discrete many-body systems

Fuente: arXiv
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Autori principali: Zacinskis, Aleksandrs, Ebel, Frank T., Pelz, Mathias, Kugler, Fabian B., Held, Karsten, von Delft, Jan, Haverkort, Maurits W., Gleis, Andreas
Natura: Preprint
Pubblicazione: 2026
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author Zacinskis, Aleksandrs
Ebel, Frank T.
Pelz, Mathias
Kugler, Fabian B.
Held, Karsten
von Delft, Jan
Haverkort, Maurits W.
Gleis, Andreas
author_facet Zacinskis, Aleksandrs
Ebel, Frank T.
Pelz, Mathias
Kugler, Fabian B.
Held, Karsten
von Delft, Jan
Haverkort, Maurits W.
Gleis, Andreas
contents We derive a discrete spectral representation of the single-particle self-energy using a discrete evaluation of Kugler's symmetric improved estimator. Our construction can be used on both the real and the complex (Matsubara) frequency axis. It is guaranteed to remain causal at the numerical level, in contrast to standard approaches that may generate unphysical negative spectral weight or require additional broadening. Our representation can be used for any Hamiltonian; here we apply it to quantum impurity models and in dynamical mean-field theory. The latter is formulated with a discrete hybridization function throughout its self-consistency loop. In both cases and across various numerical methods, we obtain significantly improved accuracy for a range of impurity properties.
format Preprint
id arxiv_https___arxiv_org_abs_2605_04974
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Symmetric estimator for discrete self-energy of discrete many-body systems
Zacinskis, Aleksandrs
Ebel, Frank T.
Pelz, Mathias
Kugler, Fabian B.
Held, Karsten
von Delft, Jan
Haverkort, Maurits W.
Gleis, Andreas
Strongly Correlated Electrons
We derive a discrete spectral representation of the single-particle self-energy using a discrete evaluation of Kugler's symmetric improved estimator. Our construction can be used on both the real and the complex (Matsubara) frequency axis. It is guaranteed to remain causal at the numerical level, in contrast to standard approaches that may generate unphysical negative spectral weight or require additional broadening. Our representation can be used for any Hamiltonian; here we apply it to quantum impurity models and in dynamical mean-field theory. The latter is formulated with a discrete hybridization function throughout its self-consistency loop. In both cases and across various numerical methods, we obtain significantly improved accuracy for a range of impurity properties.
title Symmetric estimator for discrete self-energy of discrete many-body systems
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2605.04974