Metallic Electro-Optic Effect in Twisted Double-Bilayer Graphene

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: de Sousa, D. J. P., Roldan-Levchenko, N., Ascencio, C. O., Forte, J. D. S., Haney, Paul M., Low, Tony
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917047637639168
author de Sousa, D. J. P.
Roldan-Levchenko, N.
Ascencio, C. O.
Forte, J. D. S.
Haney, Paul M.
Low, Tony
author_facet de Sousa, D. J. P.
Roldan-Levchenko, N.
Ascencio, C. O.
Forte, J. D. S.
Haney, Paul M.
Low, Tony
contents Recent theoretical advances have highlighted the role of Bloch state intrinsic properties in enabling unconventional electro-optic (EO) phenomena in bulk metals, offering novel strategies for dynamic optical control in quantum materials. Here, we identify an alternative EO mechanism in bulk metallic systems that arises from the interplay between Berry curvature and the orbital magnetic moment of Bloch electrons. Focusing on twisted double-bilayer graphene (TDBG), we show that the enhanced intrinsic properties of moiré Bloch bands give rise to a sizable linear magnetoelectric EO response, a first-order, electric-field-induced non-Hermitian correction to the gyrotropic magnetic susceptibility. This mechanism dominates in $C_{3z}$-symmetric TDBG, where EO contributions originating from the Berry curvature dipole (BCD) are symmetry-forbidden. Our calculations reveal giant, gate-tunable linear and circular dichroism in the terahertz regime, establishing a robust and tunable platform for ultrafast EO modulation in two-dimensional materials beyond the BCD paradigm.
format Preprint
id arxiv_https___arxiv_org_abs_2510_23784
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Metallic Electro-Optic Effect in Twisted Double-Bilayer Graphene
de Sousa, D. J. P.
Roldan-Levchenko, N.
Ascencio, C. O.
Forte, J. D. S.
Haney, Paul M.
Low, Tony
Mesoscale and Nanoscale Physics
Materials Science
Recent theoretical advances have highlighted the role of Bloch state intrinsic properties in enabling unconventional electro-optic (EO) phenomena in bulk metals, offering novel strategies for dynamic optical control in quantum materials. Here, we identify an alternative EO mechanism in bulk metallic systems that arises from the interplay between Berry curvature and the orbital magnetic moment of Bloch electrons. Focusing on twisted double-bilayer graphene (TDBG), we show that the enhanced intrinsic properties of moiré Bloch bands give rise to a sizable linear magnetoelectric EO response, a first-order, electric-field-induced non-Hermitian correction to the gyrotropic magnetic susceptibility. This mechanism dominates in $C_{3z}$-symmetric TDBG, where EO contributions originating from the Berry curvature dipole (BCD) are symmetry-forbidden. Our calculations reveal giant, gate-tunable linear and circular dichroism in the terahertz regime, establishing a robust and tunable platform for ultrafast EO modulation in two-dimensional materials beyond the BCD paradigm.
title Metallic Electro-Optic Effect in Twisted Double-Bilayer Graphene
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2510.23784