Hallmarks of spin textures for high-harmonic generation in two-dimensional materials

Fuente: arXiv
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Main Authors: Gabriele, Francesco, Ortix, Carmine, Cuoco, Mario, Forte, Filomena
Format: Preprint
Published: 2025
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author Gabriele, Francesco
Ortix, Carmine
Cuoco, Mario
Forte, Filomena
author_facet Gabriele, Francesco
Ortix, Carmine
Cuoco, Mario
Forte, Filomena
contents Spin-orbit coupling and quantum geometry are fundamental aspects in modern condensed matter physics, with their primary manifestations in momentum space being spin textures and Berry curvature. In this work, we investigate their interplay with high-harmonic generation (HHG) in two-dimensional non-centrosymmetric materials, with an emphasis on even-order harmonics. Our analysis reveals that the emergence of finite even-order harmonics necessarily requires a broken twofold rotational symmetry in the spin texture, as well as a non-trivial Berry curvature in systems with time-reversal invariance. This symmetry breaking can arise across various degrees of freedom and impact both spin textures and optical response via spin-orbit interactions. We also show that HHG is particularly sensitive to dynamical rotational-symmetry breaking, as even high-order components can be modulated by a time-dependent symmetry breaking. These findings underscore the potential of HHG as a tool for exploring electronic phases with broken rotational symmetry, as well as the associated phase transitions in two-dimensional materials, and provide novel perspectives for designing symmetry-dependent nonlinear optical phenomena.
format Preprint
id arxiv_https___arxiv_org_abs_2501_04545
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hallmarks of spin textures for high-harmonic generation in two-dimensional materials
Gabriele, Francesco
Ortix, Carmine
Cuoco, Mario
Forte, Filomena
Strongly Correlated Electrons
Spin-orbit coupling and quantum geometry are fundamental aspects in modern condensed matter physics, with their primary manifestations in momentum space being spin textures and Berry curvature. In this work, we investigate their interplay with high-harmonic generation (HHG) in two-dimensional non-centrosymmetric materials, with an emphasis on even-order harmonics. Our analysis reveals that the emergence of finite even-order harmonics necessarily requires a broken twofold rotational symmetry in the spin texture, as well as a non-trivial Berry curvature in systems with time-reversal invariance. This symmetry breaking can arise across various degrees of freedom and impact both spin textures and optical response via spin-orbit interactions. We also show that HHG is particularly sensitive to dynamical rotational-symmetry breaking, as even high-order components can be modulated by a time-dependent symmetry breaking. These findings underscore the potential of HHG as a tool for exploring electronic phases with broken rotational symmetry, as well as the associated phase transitions in two-dimensional materials, and provide novel perspectives for designing symmetry-dependent nonlinear optical phenomena.
title Hallmarks of spin textures for high-harmonic generation in two-dimensional materials
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2501.04545