Photo-Tunable Magnetoresistance and Resistivity Crossover in 2D Antiferromagnet CrSBr

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Main Author: Varade, Vaibhav
Format: Recurso digital
Published: Zenodo 2025
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author Varade, Vaibhav
author_facet Varade, Vaibhav
contents <p>We report a comprehensive study of magnetotransport in few-layer van der Waals antiferromagnet CrSBr, revealing how optical illumination profoundly alters its magnetic and electronic behavior. A temperature-dependent resistivity crossover appears<br>near the Néel temperature (∼ 132 K), marking transitions from phonon-limited conduction at high temperatures to magnon-assisted localization and, finally, hopping conductivity in the low-temperature insulating phase. Below the Néel temperature, illumination dramatically enhances negative magnetoresistance, evidencing a strong coupling between photoexcited carriers and magnetic order. Notably, linearly polarized light induces an anisotropic magnetoresistance response, whereas circularly polarized light yields an isotropic effect, reflecting the role of crystal anisotropy in photo magneto-transport. These findings demonstrate light-controlled modulation of the resistance and magnetic order in CrSBr, underscoring its promise for opto-magnetoelectronic and spintronic applications based on van der Waals antiferromagnets.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17880625
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Photo-Tunable Magnetoresistance and Resistivity Crossover in 2D Antiferromagnet CrSBr
Varade, Vaibhav
<p>We report a comprehensive study of magnetotransport in few-layer van der Waals antiferromagnet CrSBr, revealing how optical illumination profoundly alters its magnetic and electronic behavior. A temperature-dependent resistivity crossover appears<br>near the Néel temperature (∼ 132 K), marking transitions from phonon-limited conduction at high temperatures to magnon-assisted localization and, finally, hopping conductivity in the low-temperature insulating phase. Below the Néel temperature, illumination dramatically enhances negative magnetoresistance, evidencing a strong coupling between photoexcited carriers and magnetic order. Notably, linearly polarized light induces an anisotropic magnetoresistance response, whereas circularly polarized light yields an isotropic effect, reflecting the role of crystal anisotropy in photo magneto-transport. These findings demonstrate light-controlled modulation of the resistance and magnetic order in CrSBr, underscoring its promise for opto-magnetoelectronic and spintronic applications based on van der Waals antiferromagnets.</p>
title Photo-Tunable Magnetoresistance and Resistivity Crossover in 2D Antiferromagnet CrSBr
url https://doi.org/10.5281/zenodo.17880625