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arxiv: 2009.11006 · v1 · pith:IU5YMMMH · submitted 2020-09-23 · cond-mat.mtrl-sci · physics.app-ph

Enhancement of anomalous Nernst effect in Ni/Pt superlattice

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classification cond-mat.mtrl-sci physics.app-ph
keywords anomalousenhancementnernstsuperlatticesalphacoefficienteffectbeen
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We report an enhancement of the anomalous Nernst effect (ANE) in Ni/Pt (001) epitaxial superlattices. The transport and magneto-thermoelectric properties were investigated for the Ni/Pt superlattices with various Ni layer thicknesses (${\it t}$). The anomalous Nernst coefficient was increased up to more than 1 ${\mu}$V K$^{-1}$ for 2.0 nm ${\leq}$ ${\it t}$ ${\leq}$ 4.0 nm, which was the remarkable enhancement compared to the bulk Ni. It has been found that the large transverse Peltier coefficient (${\alpha}$$_{xy}$), reaching ${\alpha}$$_{xy}$ = 4.8 A K$^{-1}$ m$^{-1}$ for ${\it t}$ = 4.0 nm, plays a prime role for the enhanced ANE of the Ni/Pt (001) superlattices.

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