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    Anisotropic spin-polarized conductivity in collinear altermagnets

    Mingbo Dou1, Xianjie Wang1,2,3, and L. L. Tao1,2,3,*

    • 1School of Physics, Harbin Institute of Technology, Harbin 150001, China
    • 2Frontiers Science Center for Matter Behave in Space Environment, Harbin Institute of Technology, Harbin 150001, China
    • 3Heilongjiang Provincial Key Laboratory of Advanced Quantum Functional Materials and Sensor Devices, Harbin 150001, China

    • *Contact author: lltao@hit.edu.cn

    Phys. Rev. B 111, 224423 – Published 20 June, 2025

    DOI: https://doi.org/10.1103/w52v-blqm

    Abstract

    The altermagnet exhibits the nonrelativistic spin splitting that enables all-electrical generation of spin-polarized currents beyond the spin-orbit coupling. Here, we report on a study on the anisotropic spin-polarized conductivity in collinear altermagnets. Based on the Boltzmann transport theory, we first study this effect using the general group-theoretical analysis and identify the spin point groups sustaining the finite spin polarization given in terms of spin-polarized conductivity. We show that the spin polarization vanishes along any direction for the g-wave and i-wave altermagnets while the spin polarization is significantly anisotropic for the d-wave altermagnet. We further derive the analytical expressions for the anisotropic spin polarization in the d-wave altermagnets. Then, we exemplify those phenomena in several representative altermagnets based on the density functional theory calculations. Our work enriches the altermagnetic spintronics and paves the practical way to produce large spin polarization in collinear altermagnets.

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