Magnon-polaron transport in magnetic insulators

Publication date

2017-04-14

Authors

Flebus, B.ISNI 0000000505995091
Shen, Ka
Kikkawa, Takashi
Uchida, Ken-ichi
Qiu, Zhiyong
Saitoh, Eiji
Duine, Rembert A.ISNI 0000000387951716
Bauer, Gerrit E. W.ISNI 000000038397841X

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Article
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Abstract

We theoretically study the effects of strong magnetoelastic coupling on the transport properties of magnetic insulators. We develop a Boltzmann transport theory for the mixed magnon-phonon modes (magnon polarons) and determine transport coefficients and spin diffusion length. Magnon-polaron formation causes anomalous features in the magnetic field and temperature dependence of the spin Seebeck effect when the disorder scattering in the magnetic and elastic subsystems is sufficiently different. Experimental data by Kikkawa et al. [PRL 117, 207203 (2016)] on yttrium iron garnet films can be explained by an acoustic quality that is much better than the magnetic quality of the material. We predict similar anomalous features in the spin and heat conductivity and non-local spin transport experiments.

Keywords

Magnetoelastic effect, Spin Seebeck effect, Spintronics, Magnetic insulators

Citation

Flebus, B, Shen, K, Kikkawa, T, Uchida, K, Qiu, Z, Saitoh, E, Duine, R A & Bauer, G E W 2017, 'Magnon-polaron transport in magnetic insulators', Physical Review B - Condensed Matter and Materials Physics, vol. 95, no. 14, 144420. https://doi.org/10.1103/PhysRevB.95.144420