High-throughput calculations of antiferromagnets hosting anomalous transport phenomena

Fuente: arXiv
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Main Authors: Nomoto, Takuya, Minami, Susumu, Yanagi, Yuki, Suzuki, Michi-To, Koretsune, Takashi, Arita, Ryotaro
Format: Preprint
Published: 2024
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author Nomoto, Takuya
Minami, Susumu
Yanagi, Yuki
Suzuki, Michi-To
Koretsune, Takashi
Arita, Ryotaro
author_facet Nomoto, Takuya
Minami, Susumu
Yanagi, Yuki
Suzuki, Michi-To
Koretsune, Takashi
Arita, Ryotaro
contents We develop a high-throughput computational scheme based on cluster multipole theory to identify new functional antiferromagnets. This approach is applied to 228 magnetic compounds listed in the AtomWork-Adv database, known for their elevated Néel temperatures. We conduct systematic investigations of both stable and metastable magnetic configurations of these materials. Our findings reveal that 34 of these compounds exhibit antiferromagnetic structures with zero propagation vectors and magnetic symmetries identical to conventional ferromagnets, rendering them potentially invaluable for spintronics applications. By cross-referencing our predictions with the existing MAGNDATA database and published literature, we verify the reliability of our findings for 26 out of 28 compounds with partially or fully elucidated magnetic structures in the experiments. These results not only affirm the reliability of our scheme but also point to its potential for broader applicability in the ongoing quest for the discovery of new functional magnets.13
format Preprint
id arxiv_https___arxiv_org_abs_2404_02437
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High-throughput calculations of antiferromagnets hosting anomalous transport phenomena
Nomoto, Takuya
Minami, Susumu
Yanagi, Yuki
Suzuki, Michi-To
Koretsune, Takashi
Arita, Ryotaro
Materials Science
We develop a high-throughput computational scheme based on cluster multipole theory to identify new functional antiferromagnets. This approach is applied to 228 magnetic compounds listed in the AtomWork-Adv database, known for their elevated Néel temperatures. We conduct systematic investigations of both stable and metastable magnetic configurations of these materials. Our findings reveal that 34 of these compounds exhibit antiferromagnetic structures with zero propagation vectors and magnetic symmetries identical to conventional ferromagnets, rendering them potentially invaluable for spintronics applications. By cross-referencing our predictions with the existing MAGNDATA database and published literature, we verify the reliability of our findings for 26 out of 28 compounds with partially or fully elucidated magnetic structures in the experiments. These results not only affirm the reliability of our scheme but also point to its potential for broader applicability in the ongoing quest for the discovery of new functional magnets.13
title High-throughput calculations of antiferromagnets hosting anomalous transport phenomena
topic Materials Science
url https://arxiv.org/abs/2404.02437