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March 6, 2026Journal of Applied Physics1 citations

Influence of transition-metal composition on anomalous Nernst effect in amorphous Tb–Fe–Co thin films

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HIHiroto ImaedaTTTsunehiro TakeuchiHAHiroyuki Awano

Key Points

  • The study aims to investigate how the composition of transition metals influences the anomalous Nernst effect in amorphous Tb–Fe–Co thin films.
  • Conducted a comprehensive evaluation of transition-metal compositions in Tb–Fe–Co thin films.
  • Measured electrical and thermoelectric properties of the films.
  • Analyzed contributions from direct electron conduction and combined Seebeck and anomalous Hall effects.
  • The maximum anomalous Nernst coefficient was found to be 1.8 μV/K for the composition Tb11.0(Fe50.0Co50.0)89.0.
  • Two major contributions to the ANE were identified: one from direct electron conduction and another from combined effects.
  • 3d electrons from transition metals were found to significantly contribute to the ANE despite the films being amorphous.

Abstract

We conducted a comprehensive study on the transition-metal compositional dependence of the anomalous Nernst effect (ANE) in amorphous (amo.) Tb–Fe–Co thin films. The anomalous Nernst coefficient strongly depends not only on the Tb composition but also on the transition metal composition, reaching a maximum of 1.8 μV/K for amo. Tb11.0(Fe50.0Co50.0)89.0. By evaluating the electrical and thermoelectric properties, it was clarified that this maximum is achieved by the superposition of two large contributions: S1 arising from direct transverse electron conduction due to a temperature gradient and S2 resulting from the combined Seebeck and anomalous Hall effects. By examining the transition-metal composition dependence in detail, we discovered that, despite being amorphous structures, the 3d electrons of the transition metal could be sensitively contributing to the ANE and anomalous Hall effect as if they were electron-doped. Our research provides insights for enhancing the ANE in amorphous structures.

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Cite This Study

Imaeda et al. (2026) studied this question.

synapsesocial.com/papers/69aa7048531e4c4a9ff59dc1https://doi.org/10.1063/5.0316668
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