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Spin Caloritronics in irradiated chiral ferromagnetic systems

Spin Caloritronics in irradiated chiral ferromagnetic systems

来源:Arxiv_logoArxiv
英文摘要

We study the charge and spin-dependent thermoelectric response of a ferromagnetic helical system irradiated by arbitrarily polarized light, using a tight-binding framework and the Floquet-Bloch formalism. Transport properties for individual spin channels are determined by employing the non-equilibrium Green's function technique, while phonon thermal conductance is evaluated using a mass-spring model with different lead materials. The findings reveal that that light irradiation induces spin-split transmission features, suppresses thermal conductance, and yields favorable spin thermopower and figure of merit (FOM). The spin FOM consistently outperforms its charge counterpart under various light conditions. Moreover, long-range hopping is shown to enhance the spin thermoelectric performance, suggesting a promising strategy for efficient energy conversion in related ferromagnetic systems.

Sudin Ganguly、Moumita Dey、Santanu K. Maiti

光电子技术半导体技术

Sudin Ganguly,Moumita Dey,Santanu K. Maiti.Spin Caloritronics in irradiated chiral ferromagnetic systems[EB/OL].(2025-07-03)[2025-07-16].https://arxiv.org/abs/2507.02765.点此复制

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