Magnon Condensation and Spin Superfluidity
arXiv:1702.00846 · doi:10.1016/j.jmmm.2017.12.029
Abstract
We consider the phenomenon of Bose-Einstein condensation of quasi-equilibrium magnons which leads to a spin superfluidity, the coherent quantum transfer of magnetization in magnetic materials. These phenomena are beyond the classical Landau-Lifshitz-Gilbert paradigm. The critical conditions for excited magnon density for ferro- and antiferromagnets, bulk and thin films are estimated and discussed. The BEC should occur in the antiferromagnetic hematite at much lower excited magnon density compared to the ferromagnetic YIG.
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Cited by in corpus (14)
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- Ferromagnetic Resonance Studies of Strain tuned Bi:YIG Films
- Bose condensation and spin superfluidity of magnons in a perpendicularly magnetized film of yttrium iron garnet
- Order indices and entanglement production in quantum systems
- Magnon Bose-Einstein condensate and supercurrents over a wide temperature range
- Magnonics and Supermagnonics
- Stability of chiral magnon condensates in collinear antiferromagnetic insulators
- Nonequilibrium phase transition in a driven-dissipative quantum antiferromagnet
- The magnonic superfluid droplet at room temperature
- Micromagnetic modeling of magnon coherent states in a nonuniform magnetic field
- Conventional magnon BEC in YIG film