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    Anomalous thermoelectric and thermal Hall effects in irradiated altermagnets

    Fang Qin (覃昉)1,* and Xiao-Bin Qiang2,3,†

    • *Contact author: qinfang@just.edu.cn
    • †Contact author: 12331032@mail.sustech.edu.cn

    Phys. Rev. B 114, 185427 – Published 25 September, 2026

    DOI: https://doi.org/10.1103/dqs3-935d

    Abstract

    We show that a d-wave altermagnet can be transformed into a Chern insulator by irradiating it with elliptically polarized light from a high-frequency photon beam. We further explore the intrinsic anomalous thermoelectric and thermal Hall effects in light-irradiated altermagnets. At low temperatures, the thermoelectric Hall coefficient exhibits a linear temperature dependence but vanishes within the energy gap between the conduction and valence bands near the M point. However, it displays pronounced peaks and dips at the gap boundaries near both the M and Γ points, suggesting that thermoelectric Hall conductivity is a sensitive probe for these gapped regions. Similarly, the low-temperature thermal Hall coefficient, which also shows a linear temperature dependence, becomes quantized across the bandwidth, reflecting the underlying topological character of the light-induced Chern insulating phase. These results establish thermoelectric and thermal Hall transports as powerful signatures of topology in driven altermagnetic systems.

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