Effective suppression of thermoelectric voltage in nonlocal spin-valve measurement

We demonstrate that the background signal in the nonlocal spin-valve measurement can be sufficiently suppressed by optimizing the electrode design of the lateral spin valve. A relatively long length scale of heat propagation produces spin-independent thermoelectric signals under the combination of t...

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Veröffentlicht in:Applied physics express 2017-06, Vol.10 (6), p.63004
Hauptverfasser: Ariki, Taisei, Nomura, Tatsuya, Ohnishi, Kohei, Kimura, Takashi
Format: Artikel
Sprache:eng
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Zusammenfassung:We demonstrate that the background signal in the nonlocal spin-valve measurement can be sufficiently suppressed by optimizing the electrode design of the lateral spin valve. A relatively long length scale of heat propagation produces spin-independent thermoelectric signals under the combination of the Peltier and Seebeck effects. These unfavorable signals can be reduced by mixing the Peltier effects in two transparent ferromagnetic/nonmagnetic junctions. Proper understanding of the contribution from the heat current in no spin-current area is a key for effective reduction of the spin-independent background signal.
ISSN:1882-0778
1882-0786
DOI:10.7567/APEX.10.063004