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    Multipole analysis of spin currents in altermagnetic MnTe

    Ryosuke Hirakida1, Karma Tenzin2, Chao Chen Ye2, Berkay Kilic2, Carmine Autieri3, and Jagoda Sławińska2

    • 1Department of Physics, University of Tokyo, Bunkyo, Tokyo 113-0033, Japan
    • 2Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 3, 9747 AG Groningen, The Netherlands
    • 3International Research Centre MagTop, Institute of Physics, Polish Academy of Sciences, Aleja Lotników 32/46, PL-02668 Warsaw, Poland and SPIN-CNR, UOS Salerno, IT-84084 Fisciano (SA), Italy

    Phys. Rev. B 113, 155104 – Published 1 April, 2026

    DOI: https://doi.org/10.1103/ssr6-5w3v

    Abstract

    Altermagnets, a class of unconventional antiferromagnets where antiparallel spins are connected by combined rotational and translational symmetries, have recently emerged as promising candidates for spintronic applications, as they can efficiently generate spin currents while maintaining vanishing net magnetization. Here, we investigate charge transport and spin currents in α-MnTe, a prototypical altermagnet, using symmetry analysis within the multipole framework and fully relativistic first-principles calculations using the Kubo formalism. Our results show that different magnetic configurations with Néel vectors N̂∥y and N̂∥x in MnTe induce distinct order parameters. This distinction gives rise to spin-momentum locking with different parities and magnetic spin Hall effects (magnetic SHEs) with different anisotropies. Strikingly, our calculations show that the combination of intrinsic spin-orbit coupling and altermagnetic spin splitting yields a large magnetic spin Hall angle of up to 16% rivaling or exceeding that of heavy metals such as Pt. On the other hand, the anisotropy of the magnetic SHE provides a practical means to identify the type of order parameter. This establishes, through the powerful framework of multipoles, a general approach for studying transport phenomena that extends to a broader class of altermagnets beyond MnTe.

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