Microscopic Origin of Dephasing in Solids from First-Principles Electron-Phonon Interactions
Other Condensed Matter
2026-07-19 v1
Abstract
Electron-phonon interactions provide a microscopic origin of effective dephasing in solids within real -time TDDFT via a time-domain Williams-Lax framework. In metals, Drude -like damping emerges from a single disordered configuration; in dielectrics, the same mechanism yields clean high-harmonic spectra without introducing ultrashort phenomenological dephasing times. Mapping supercell dynamics onto a primitive-cell density matrix reveals that dephasing is governed primarily by population dynamics (diagonal elements) rather than by the decay of off-diagonal coherence.
Keywords
Cite
@article{arxiv.2607.17109,
title = {Microscopic Origin of Dephasing in Solids from First-Principles Electron-Phonon Interactions},
author = {Atsushi Yamada and Kazuhiro Yabana},
journal= {arXiv preprint arXiv:2607.17109},
year = {2026}
}
Comments
5 pages plus 2 pages of Supplemental Material