Two-Fluid Theory for Spin Superfluidity in Magnetic Insulators

Publication date

2016-03-18

Authors

Flebus, B.ISNI 0000000505995091
Bender, Scott A.ISNI 0000000505957351
Tserkovnyak, Y.
Duine, Rembert A.ISNI 0000000387951716

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Supervisors

Document Type

Article
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Abstract

We investigate coupled spin and heat transport in easy-plane magnetic insulators. These materials display a continuous phase transition between normal and condensate states that is controlled by an external magnetic field. Using hydrodynamic equations supplemented by Gross-Pitaevski phenomenology and magnetoelectric circuit theory, we derive a two-fluid model to describe the dynamics of thermal and condensed magnons, and the appropriate boundary conditions in a hybrid normal-metal|magnetic-insulator|normal-metal heterostructure. We discuss how the emergent spin superfluidity can be experimentally probed via a spin Seebeck effect measurement.

Keywords

cond-mat.mes-hall

Citation

Flebus, B, Bender, S A, Tserkovnyak, Y & Duine, R A 2016, 'Two-Fluid Theory for Spin Superfluidity in Magnetic Insulators', Physical Review Letters, vol. 116, no. 11, 117201, pp. 1-5. https://doi.org/10.1103/PhysRevLett.116.117201