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Main Authors: Le, Cristian M., Hübener, Hannes, Neufeld, Ofer, Rubio, Angel
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.21230
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author Le, Cristian M.
Hübener, Hannes
Neufeld, Ofer
Rubio, Angel
author_facet Le, Cristian M.
Hübener, Hannes
Neufeld, Ofer
Rubio, Angel
contents Time-dependent Wannier functions were initially proposed as a means for calculating the polarization current in crystals driven by external fields. In this work, we present a simple gauge where Wannier states are defined based on the maximally localized functions at the initial time, and are propagated using the time-dependent Bloch states obtained from established first-principles calculations, avoiding the costly Wannierization at ech time step. We show that this basis efficiently describes the time-dependent polarization of the laser driven system through the analysis of the motion of Wannier centers. We use this technique to analyze highly nonlinear and non-perturbative responses such as high harmonic generation in solids, using the hexagonal boron nitride as an illustrative example, and we show how it provides an intuitive picture for the physical mechanisms.
format Preprint
id arxiv_https___arxiv_org_abs_2410_21230
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Efficient time dependent Wannier functions for ultrafast dynamics
Le, Cristian M.
Hübener, Hannes
Neufeld, Ofer
Rubio, Angel
Materials Science
Computational Physics
Time-dependent Wannier functions were initially proposed as a means for calculating the polarization current in crystals driven by external fields. In this work, we present a simple gauge where Wannier states are defined based on the maximally localized functions at the initial time, and are propagated using the time-dependent Bloch states obtained from established first-principles calculations, avoiding the costly Wannierization at ech time step. We show that this basis efficiently describes the time-dependent polarization of the laser driven system through the analysis of the motion of Wannier centers. We use this technique to analyze highly nonlinear and non-perturbative responses such as high harmonic generation in solids, using the hexagonal boron nitride as an illustrative example, and we show how it provides an intuitive picture for the physical mechanisms.
title Efficient time dependent Wannier functions for ultrafast dynamics
topic Materials Science
Computational Physics
url https://arxiv.org/abs/2410.21230