Please use this identifier to cite or link to this item: http://dx.doi.org/10.25673/121034
Title: Chiral split magnons in metallic g-wave altermagnets : insights from many-body perturbation theory
Author(s): Beida, Weydan
Şas̜ıoğlu, ErsoyLook up in the Integrated Authority File of the German National Library
Friedrich, ChristophLook up in the Integrated Authority File of the German National Library
Bihlmayer, GustavLook up in the Integrated Authority File of the German National Library
Mokrousov, YuriyLook up in the Integrated Authority File of the German National Library
Blügel, StefanLook up in the Integrated Authority File of the German National Library
Issue Date: 2025
Type: Article
Language: English
Abstract: Altermagnets are a novel class of magnetic materials that bridge the gap between ferromagnets (FMs) and antiferromagnets (AFMs). A key feature is the non-degeneracy of magnon modes where spin splitting occurs, leading to chirality and direction-dependent magnon dispersions governed by symmetry. We explore this in metallic g-wave altermagnets (TPn, where T = V, Cr; Pn = As, Sb, Bi) using density functional and many-body perturbation theories. We analyze the influence of pnictogen substitution on spin splitting and magnon behavior. We uncover anisotropic magnon band splitting aligned with electronic structure, and wavevector- and chirality-dependent damping due to Stoner excitations. We identify regions in the Brillouin zone where the chiral magnon splitting overcomes the damping. These findings suggest altermagnets are promising for spintronic and magnonic technologies, where direction-dependent magnon lifetimes and nonreciprocal magno transport may enable chiral magnon propagation, while wavevector-selective damping could be harnessed for fast and controllable magnetization switching.
URI: https://opendata.uni-halle.de//handle/1981185920/122989
http://dx.doi.org/10.25673/121034
Open Access: Open access publication
License: (CC BY 4.0) Creative Commons Attribution 4.0(CC BY 4.0) Creative Commons Attribution 4.0
Journal Title: npj quantum materials
Publisher: Nature Publishing Group
Publisher Place: [London]
Volume: 10
Original Publication: 10.1038/s41535-025-00818-8
Page Start: 1
Page End: 11
Appears in Collections:Open Access Publikationen der MLU

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