Observation of the spin Nernst effect

The observation of the spin Nernst effect in platinum thin film is reported. This and the spin Hall effects are found to be of similar magnitude. The observation of the spin Hall effect 1 , 2 , 3 triggered intense research on pure spin current transport 4 . With the spin Hall effect 1 , 2 , 5 , 6 ,...

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Veröffentlicht in:Nature materials 2017-10, Vol.16 (10), p.977-981
Hauptverfasser: Meyer, S., Chen, Y.-T., Wimmer, S., Althammer, M., Wimmer, T., Schlitz, R., Geprägs, S., Huebl, H., Ködderitzsch, D., Ebert, H., Bauer, G. E. W., Gross, R., Goennenwein, S. T. B.
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Sprache:eng
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Zusammenfassung:The observation of the spin Nernst effect in platinum thin film is reported. This and the spin Hall effects are found to be of similar magnitude. The observation of the spin Hall effect 1 , 2 , 3 triggered intense research on pure spin current transport 4 . With the spin Hall effect 1 , 2 , 5 , 6 , the spin Seebeck effect 7 , 8 , 9 and the spin Peltier effect 10 , 11 already observed, our picture of pure spin current transport is almost complete. The only missing piece is the spin Nernst (–Ettingshausen) effect, which so far has been discussed only on theoretical grounds 12 , 13 , 14 , 15 . Here, we report the observation of the spin Nernst effect. By applying a longitudinal temperature gradient, we generate a pure transverse spin current in a Pt thin film. For readout, we exploit the magnetization-orientation-dependent spin transfer to an adjacent yttrium iron garnet layer, converting the spin Nernst current in Pt into a controlled change of the longitudinal and transverse thermopower voltage. Our experiments show that the spin Nernst and the spin Hall effect in Pt are of comparable magnitude, but differ in sign, as corroborated by first-principles calculations.
ISSN:1476-1122
1476-4660
DOI:10.1038/nmat4964