Effective enhancement of the electron-phonon coupling driven by nonperturbative electronic density fluctuations

Fuente: arXiv
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Hauptverfasser: Moghadas, Emin, Reitner, Matthias, Wehling, Tim, Sangiovanni, Giorgio, Ciuchi, Sergio, Toschi, Alessandro
Format: Preprint
Veröffentlicht: 2025
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author Moghadas, Emin
Reitner, Matthias
Wehling, Tim
Sangiovanni, Giorgio
Ciuchi, Sergio
Toschi, Alessandro
author_facet Moghadas, Emin
Reitner, Matthias
Wehling, Tim
Sangiovanni, Giorgio
Ciuchi, Sergio
Toschi, Alessandro
contents We present a dynamical mean-field study of the nonperturbative electronic mechanisms, which may lead to significant enhancements of the electron-phonon coupling in correlated electron systems. Analyzing the effects of electronic correlations on the lowest-order electron-phonon processes, we show that in the proximity of the Mott metal-to-insulator transition of the doped square lattice Hubbard model, where the isothermal charge response becomes particularly large at small momenta, the coupling of electrons to the lattice is strongly increased. This, in turn, induces significant corrections to both the electronic self-energy and phonon-mediated pairing interaction, indicating the possible onset of a strong interplay between lattice and electronic degrees of freedom even for small values of the bare electron-phonon coupling.
format Preprint
id arxiv_https___arxiv_org_abs_2503_12113
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effective enhancement of the electron-phonon coupling driven by nonperturbative electronic density fluctuations
Moghadas, Emin
Reitner, Matthias
Wehling, Tim
Sangiovanni, Giorgio
Ciuchi, Sergio
Toschi, Alessandro
Strongly Correlated Electrons
We present a dynamical mean-field study of the nonperturbative electronic mechanisms, which may lead to significant enhancements of the electron-phonon coupling in correlated electron systems. Analyzing the effects of electronic correlations on the lowest-order electron-phonon processes, we show that in the proximity of the Mott metal-to-insulator transition of the doped square lattice Hubbard model, where the isothermal charge response becomes particularly large at small momenta, the coupling of electrons to the lattice is strongly increased. This, in turn, induces significant corrections to both the electronic self-energy and phonon-mediated pairing interaction, indicating the possible onset of a strong interplay between lattice and electronic degrees of freedom even for small values of the bare electron-phonon coupling.
title Effective enhancement of the electron-phonon coupling driven by nonperturbative electronic density fluctuations
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2503.12113