Metallic electro-optic effects in topological chiral crystals

Fuente: arXiv
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Main Authors: Ascencio, C. O., de Sousa, D. J. P., Low, Tony
Format: Preprint
Published: 2025
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author Ascencio, C. O.
de Sousa, D. J. P.
Low, Tony
author_facet Ascencio, C. O.
de Sousa, D. J. P.
Low, Tony
contents Topological chiral crystals have emerged as a fertile material platform for investigating optical phenomena derived from the distinctive Fermi surface Berry curvature and orbital magnetic moment textures around multifold chiral band crossings pinned at the time-reversal invariant momenta. In this work, by means of tight-binding model and first principles based calculations, we investigate metallic electro-optic (EO) responses stemming from the Berry curvature and orbital magnetic moment of Bloch electrons across 37 materials belonging to space group 198 (SG198). Previously thought to vanish in SG198, our findings reveal a nonzero Berry curvature dipole attributed to the energetic misalignment between topologically charged point nodes of opposite chirality. Moreover, we find that the recently predicted magnetoelectric EO effects, which arise from the interplay between the Berry curvature and magnetic moment on the Fermi surface, are readily accessible in BeAu under experimentally feasible electric biases.
format Preprint
id arxiv_https___arxiv_org_abs_2510_26992
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Metallic electro-optic effects in topological chiral crystals
Ascencio, C. O.
de Sousa, D. J. P.
Low, Tony
Mesoscale and Nanoscale Physics
Materials Science
Topological chiral crystals have emerged as a fertile material platform for investigating optical phenomena derived from the distinctive Fermi surface Berry curvature and orbital magnetic moment textures around multifold chiral band crossings pinned at the time-reversal invariant momenta. In this work, by means of tight-binding model and first principles based calculations, we investigate metallic electro-optic (EO) responses stemming from the Berry curvature and orbital magnetic moment of Bloch electrons across 37 materials belonging to space group 198 (SG198). Previously thought to vanish in SG198, our findings reveal a nonzero Berry curvature dipole attributed to the energetic misalignment between topologically charged point nodes of opposite chirality. Moreover, we find that the recently predicted magnetoelectric EO effects, which arise from the interplay between the Berry curvature and magnetic moment on the Fermi surface, are readily accessible in BeAu under experimentally feasible electric biases.
title Metallic electro-optic effects in topological chiral crystals
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2510.26992