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Main Authors: Lu, Tiangao, Wu, Ao, Li, Junxiang, Zeng, Meng, Cheng, Di, Liu, Chang, Gong, Jiangbin, Li, Xinwei
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2509.11722
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author Lu, Tiangao
Wu, Ao
Li, Junxiang
Zeng, Meng
Cheng, Di
Liu, Chang
Gong, Jiangbin
Li, Xinwei
author_facet Lu, Tiangao
Wu, Ao
Li, Junxiang
Zeng, Meng
Cheng, Di
Liu, Chang
Gong, Jiangbin
Li, Xinwei
contents Femtosecond laser control of antiferromagnetic order is a cornerstone for future memory and logic devices operating at terahertz clock rates. The advent of altermagnets -- antiferromagnets with unconventional spin-group symmetries -- creates new opportunities in this evolving field. Here, we demonstrate ultrafast laser-induced switching in altermagnetic $α$-MnTe that orchestrates the concerted dynamics of charge, lattice, and spin degrees of freedom. Time-resolved reflectivity and birefringence measurements reveal that the transient melting of spin order is accompanied by pronounced structural and electronic instabilities, as evidenced by phonon nonlinearity and accelerated band gap shrinkage. Theoretical modeling highlights the key roles of robust magnetic correlations and spin-charge coupling pathways intrinsic to this altermagnet.
format Preprint
id arxiv_https___arxiv_org_abs_2509_11722
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ultrafast cooperative electronic, structural, and magnetic switching in an altermagnet
Lu, Tiangao
Wu, Ao
Li, Junxiang
Zeng, Meng
Cheng, Di
Liu, Chang
Gong, Jiangbin
Li, Xinwei
Strongly Correlated Electrons
Femtosecond laser control of antiferromagnetic order is a cornerstone for future memory and logic devices operating at terahertz clock rates. The advent of altermagnets -- antiferromagnets with unconventional spin-group symmetries -- creates new opportunities in this evolving field. Here, we demonstrate ultrafast laser-induced switching in altermagnetic $α$-MnTe that orchestrates the concerted dynamics of charge, lattice, and spin degrees of freedom. Time-resolved reflectivity and birefringence measurements reveal that the transient melting of spin order is accompanied by pronounced structural and electronic instabilities, as evidenced by phonon nonlinearity and accelerated band gap shrinkage. Theoretical modeling highlights the key roles of robust magnetic correlations and spin-charge coupling pathways intrinsic to this altermagnet.
title Ultrafast cooperative electronic, structural, and magnetic switching in an altermagnet
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2509.11722