X-Ray Magnetic Circular Dichroism in Altermagnetic α-MnTe

Altermagnetism is a recently identified magnetic symmetry class combining characteristics of conventional collinear ferromagnets and antiferromagnets, that were regarded as mutually exclusive, and enabling phenomena and functionalities unparalleled in either of the two traditional elementary magneti...

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Veröffentlicht in:Physical review letters 2024-04, Vol.132 (17), p.176701-176701, Article 176701
Hauptverfasser: Hariki, A, Dal Din, A, Amin, O J, Yamaguchi, T, Badura, A, Kriegner, D, Edmonds, K W, Campion, R P, Wadley, P, Backes, D, Veiga, L S I, Dhesi, S S, Springholz, G, Šmejkal, L, Výborný, K, Jungwirth, T, Kuneš, J
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Sprache:eng
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Zusammenfassung:Altermagnetism is a recently identified magnetic symmetry class combining characteristics of conventional collinear ferromagnets and antiferromagnets, that were regarded as mutually exclusive, and enabling phenomena and functionalities unparalleled in either of the two traditional elementary magnetic classes. In this work we use symmetry, ab initio theory, and experiments to explore x-ray magnetic circular dichroism (XMCD) in the altermagnetic class. As a representative material for our XMCD study we choose α-MnTe with compensated antiparallel magnetic order in which an anomalous Hall effect has been already demonstrated. We predict and experimentally confirm a characteristic XMCD line shape for compensated moments lying in a plane perpendicular to the light propagation vector. Our results highlight the distinct phenomenology in altermagnets of this time-reversal symmetry breaking response, and its potential utility for element-specific spectroscopy and microscopy.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.132.176701