Abstract
We show that the interaction between the spin-polarized current and the magnetization dynamics can be used to implement black-hole and white-hole horizons for magnons - the quanta of oscillations in the magnetization direction in magnets. We consider three different systems: easy-plane ferromagnetic metals, isotropic antiferromagnetic metals, and easy-plane magnetic insulators. Based on available experimental data, we estimate that the Hawking temperature can be as large as 1 K. We comment on the implications of magnonic horizons for spin-wave scattering and transport experiments, and for magnon entanglement.
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CITATION STYLE
Roldán-Molina, A., Nunez, A. S., & Duine, R. A. (2017). Magnonic Black Holes. Physical Review Letters, 118(6). https://doi.org/10.1103/PhysRevLett.118.061301
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