Dynamic generation of spin-wave currents in hybrid structures


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Abstract

Spin transport through the interface in a semiconductor/ferromagnetic insulator hybrid structure is studied by the nonequilibrium statistical operator method under conditions of the spin Seebeck effect. The effective parameter approach in which each examined subsystem (conduction electrons, magnons, phonons) is characterized by its specific effective temperature is considered. The effect of the resonant (electric dipole) excitation of the spin electronic subsystem of conduction electrons on spin-wave current excitation in a ferromagnetic insulator is considered. The macroscopic equations describing the spin-wave current caused by both resonant excitation of the spin system of conduction electrons and the presence of a nonuniform temperature field in the ferromagnetic insulator are derived taking into account both the resonance-diffusion propagation of magnons and their relaxation processes. It is shown that spin-wave current excitation is also of resonant nature under the given conditions.

About the authors

I. I. Lyapilin

Institute of Metal Physics; Ural Federal University after the first President of Russia B.N. Yeltsin

Email: Okorokovmike@gmail.com
Russian Federation, ul. S. Kovalevskoi 18, Yekaterinburg, 620990; ul. Mira 19, Yekaterinburg, 620002

M. S. Okorokov

Institute of Metal Physics

Author for correspondence.
Email: Okorokovmike@gmail.com
Russian Federation, ul. S. Kovalevskoi 18, Yekaterinburg, 620990

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