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Microscopic origin of level attraction for a coupled magnon-photon system in a microwave cavity

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arxiv 1904.11570 v2 pith:D6QEUXVT submitted 2019-04-25 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords responseattractioncavitycoupleddiamagneticdynamicseffectiveferromagnet
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We discuss various microscopic mechanisms for level attraction in a hybridized magnon-photon system of a ferromagnet in a microwave cavity. The discussion is based upon the electromagnetic theory of continuous media where the effects of the internal magnetization dynamics of the ferromagnet are described using dynamical response functions. This approach is in agreement with quantized multi-oscillator models of coupled photon-magnon dynamics. We demonstrate that to provide the attractive interaction between the modes, the effective response functions should be diamagnetic. Magneto-optical coupling is found to be one mechanism for the effective diamagnetic response, which is proportional to photon number. A dual mechanism based on the Aharonov-Casher effect is also highlighted, which is instead dependent on magnon number.

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  1. Nonreciprocity and Unidirectional Invisibility in Cavity Magnonics

    cond-mat.mes-hall 2019-08 accept novelty 7.0 of 10

    Interference of coherent and dissipative magnon-photon couplings in an open cavity produces nonreciprocal microwave transmission and unidirectional invisibility at zero-damping conditions.

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