Abstract:
In semiconductor heterostructure, the Coulomb interaction is
responsible for the electric current drag between two 2-d electron
gases across an electron impenetrable insulator. For two metallic
layers separated by a ferromagnetic insulator (FI) layer, the
electric current drag can be mediated by a nonequilibrium magnon
current of the FI. In this talk, I describe how an electron spin current
in metals converts into magnon currents in a FI layer. By Using the
semiclassical Boltzmann approach with proper boundary conditions, we predict
the electric drag current.
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