Unlocking Doping Effects on Altermagnetism in MnTe: Emergence of Quasi-altermagnetism

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Main Authors: Devaraj, Nayana, Bose, Anumita, Das, Arindom, Reja, Md Afsar, Mandal, Arijit, Narayan, Awadhesh, Nanda, B. R. K.
Format: Preprint
Published: 2025
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author Devaraj, Nayana
Bose, Anumita
Das, Arindom
Reja, Md Afsar
Mandal, Arijit
Narayan, Awadhesh
Nanda, B. R. K.
author_facet Devaraj, Nayana
Bose, Anumita
Das, Arindom
Reja, Md Afsar
Mandal, Arijit
Narayan, Awadhesh
Nanda, B. R. K.
contents Governed by specific symmetries, altermagnetism is an emerging field in condensed matter physics, characterized by unique spin-splitting of the bands in the momentum space co-existing with the compensated magnetization as in antiferromagnets. As crystals can have tailored and unintended defects, it is important to gain insights on how altermagnets are affected by the defects-driven symmetry-breaking which, in turn, can build promising perspectives on potential applications. In this study, considering the widely investigated MnTe as a prototype altermagnet, defects are introduced through substitutional doping to create a large configuration space of spin space groups. With the aid of density functional theory calculations, symmetry analysis, and model studies in this configuration space, we demonstrate the generic presence of spin-split of the antiferromagnetic bands in the momentum space. This is indicative of a wider class of quasi-altermagnetic materials, augmenting the set of ideal altermagnetic systems. Furthermore, we show that while pristine MnTe does not show anomalous Hall conductivity (AHC) with out-of-plane magnetization, suitable doping can be carried out to obtain finite and varied AHC. Our predictions of quasi-altermagnetism and doping-driven tailored AHC have the potential to open up as-yet-unexplored directions in this developing field.
format Preprint
id arxiv_https___arxiv_org_abs_2508_19969
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unlocking Doping Effects on Altermagnetism in MnTe: Emergence of Quasi-altermagnetism
Devaraj, Nayana
Bose, Anumita
Das, Arindom
Reja, Md Afsar
Mandal, Arijit
Narayan, Awadhesh
Nanda, B. R. K.
Materials Science
Governed by specific symmetries, altermagnetism is an emerging field in condensed matter physics, characterized by unique spin-splitting of the bands in the momentum space co-existing with the compensated magnetization as in antiferromagnets. As crystals can have tailored and unintended defects, it is important to gain insights on how altermagnets are affected by the defects-driven symmetry-breaking which, in turn, can build promising perspectives on potential applications. In this study, considering the widely investigated MnTe as a prototype altermagnet, defects are introduced through substitutional doping to create a large configuration space of spin space groups. With the aid of density functional theory calculations, symmetry analysis, and model studies in this configuration space, we demonstrate the generic presence of spin-split of the antiferromagnetic bands in the momentum space. This is indicative of a wider class of quasi-altermagnetic materials, augmenting the set of ideal altermagnetic systems. Furthermore, we show that while pristine MnTe does not show anomalous Hall conductivity (AHC) with out-of-plane magnetization, suitable doping can be carried out to obtain finite and varied AHC. Our predictions of quasi-altermagnetism and doping-driven tailored AHC have the potential to open up as-yet-unexplored directions in this developing field.
title Unlocking Doping Effects on Altermagnetism in MnTe: Emergence of Quasi-altermagnetism
topic Materials Science
url https://arxiv.org/abs/2508.19969