Tunable topology, Hall response, and spin-textures in bicircularly polarized light illuminated altermagnets

Fuente: arXiv
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Main Authors: Ganguli, Maitri, Jana, Aneek, Narayan, Awadhesh
Format: Preprint
Published: 2025
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author Ganguli, Maitri
Jana, Aneek
Narayan, Awadhesh
author_facet Ganguli, Maitri
Jana, Aneek
Narayan, Awadhesh
contents Altermagnets, featuring non-relativistic spin splitting, have drawn enormous attention due to their intriguing properties. Here, we investigate the effects of shining bicircularly polarized light (BCL) on altermagnets with Rashba spin-orbit coupling. We discover a remarkable tunability of topology, spin-textures, and Fermi surfaces of altermagnets by means of BCL illumination, going beyond monochromatic light. We illustrate a cascade of topological phase transitions controllable by BCL and demonstrate how these transitions are reflected in the anomalous Hall response of the altermagnet. Furthermore, we show that the spin-textures and Fermi surfaces can be directly tuned by the relative phase of the BCL, stemming from the underlying symmetry changes. Our findings can pave the way for effectively controlling altermagnetic materials with structured light.
format Preprint
id arxiv_https___arxiv_org_abs_2509_06349
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Tunable topology, Hall response, and spin-textures in bicircularly polarized light illuminated altermagnets
Ganguli, Maitri
Jana, Aneek
Narayan, Awadhesh
Mesoscale and Nanoscale Physics
Altermagnets, featuring non-relativistic spin splitting, have drawn enormous attention due to their intriguing properties. Here, we investigate the effects of shining bicircularly polarized light (BCL) on altermagnets with Rashba spin-orbit coupling. We discover a remarkable tunability of topology, spin-textures, and Fermi surfaces of altermagnets by means of BCL illumination, going beyond monochromatic light. We illustrate a cascade of topological phase transitions controllable by BCL and demonstrate how these transitions are reflected in the anomalous Hall response of the altermagnet. Furthermore, we show that the spin-textures and Fermi surfaces can be directly tuned by the relative phase of the BCL, stemming from the underlying symmetry changes. Our findings can pave the way for effectively controlling altermagnetic materials with structured light.
title Tunable topology, Hall response, and spin-textures in bicircularly polarized light illuminated altermagnets
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2509.06349