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Quantum controlling and the topological properties of the magnon photo-transport in two-dimensional collinear ferromagnet

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arxiv 2504.06852 v3 pith:G3HE535H submitted 2025-04-09 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords magnoneffectphoto-transportcollinearferromagneticlightmepcmspc
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In our work, we study magnon transport induced by light through Aharonov-Casher (AC) effect, including magnon spin photocurrent (MSPC) and magnon energy photocurrent (MEPC). Firstly, we regard the effect of the electric field on the magnon through the AC effect as a perturbation. Then we derived the expressions of MSPC and MEPC in two-dimensional collinear ferromagnetic system. And we apply our theory to the two-dimension ferromagnetic Hexagonal and Kagome lattice. We find that the optical frequency and the relaxation time of the material can be used to control the photo-transport of magnons. In addition, under the condition of low light frequncy and infinite relaxation time, the longitudinal magnon photo-transport is related to the topological property of the magnon system.

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  1. Ferroelectricity in a magnon Bose-Einstein condensate: Nonreciprocal superfluidity, exceptional points, and Majorana bosons

    cond-mat.mes-hall 2025-12 conditional novelty 6.0 of 10

    Strong Aharonov-Casher coupling drives a magnon Bose-Einstein condensate into a spontaneous ferroelectric superfluid, with nonreciprocal excitations and an exceptional flat band at the critical point.

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