Band structure control in the altermagnetic candidate MnTe by temperature and strain

Fuente: arXiv
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Main Authors: Kimura, Shin-ichi, Suwa, Hironao, Yuan, Kangle, Watanabe, Hiroshi, Nakamura, Takuto, Yun, Haan Kyul, Jung, Myung-Hwa
Format: Preprint
Published: 2026
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_version_ 1866915881376808960
author Kimura, Shin-ichi
Suwa, Hironao
Yuan, Kangle
Watanabe, Hiroshi
Nakamura, Takuto
Yun, Haan Kyul
Jung, Myung-Hwa
author_facet Kimura, Shin-ichi
Suwa, Hironao
Yuan, Kangle
Watanabe, Hiroshi
Nakamura, Takuto
Yun, Haan Kyul
Jung, Myung-Hwa
contents The temperature and strain dependences of the optical conductivity spectrum of hexagonal manganese telluride (MnTe) were measured, revealing absorption in the terahertz (THz) region from spin-split bands to acceptor levels. The temperature dependence of the THz absorption peak is consistent with that of a ferromagnetic phase transition, even though MnTe exhibits no net magnetism. The temperature dependence was attributed to a change in the altermagnetic electronic structure. A Fano-like antisymmetric line shape in the optical phonon absorption was observed, which originates from the interaction between optical phonons and the spin-split bands. Additionally, under negative uniaxial pressure, the THz peak shifts away from the Fermi level (EF), suggesting that spin-splitting bands at energies away from EF, consistent with the theoretical prediction that the spin-splitting angle decreases. The observed behavior of the THz peak clearly shows that MnTe has the altermagnetic electronic structure.
format Preprint
id arxiv_https___arxiv_org_abs_2603_21455
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Band structure control in the altermagnetic candidate MnTe by temperature and strain
Kimura, Shin-ichi
Suwa, Hironao
Yuan, Kangle
Watanabe, Hiroshi
Nakamura, Takuto
Yun, Haan Kyul
Jung, Myung-Hwa
Strongly Correlated Electrons
Materials Science
The temperature and strain dependences of the optical conductivity spectrum of hexagonal manganese telluride (MnTe) were measured, revealing absorption in the terahertz (THz) region from spin-split bands to acceptor levels. The temperature dependence of the THz absorption peak is consistent with that of a ferromagnetic phase transition, even though MnTe exhibits no net magnetism. The temperature dependence was attributed to a change in the altermagnetic electronic structure. A Fano-like antisymmetric line shape in the optical phonon absorption was observed, which originates from the interaction between optical phonons and the spin-split bands. Additionally, under negative uniaxial pressure, the THz peak shifts away from the Fermi level (EF), suggesting that spin-splitting bands at energies away from EF, consistent with the theoretical prediction that the spin-splitting angle decreases. The observed behavior of the THz peak clearly shows that MnTe has the altermagnetic electronic structure.
title Band structure control in the altermagnetic candidate MnTe by temperature and strain
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2603.21455