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Finite-temperature violation of the anomalous transverse Wiedemann-Franz law

  • Liangcai Xu
  • , Xiaokang Li
  • , Xiufang Lu
  • , Clément Collignon
  • , Huixia Fu
  • , Jahyun Koo
  • , Benoît Fauqué
  • , Binghai Yan
  • , Zengwei Zhu
  • , Kamran Behnia
  • Huazhong University of Science and Technology
  • PSL Research University
  • CNRS
  • Weizmann Institute of Science Israel
  • Germany; University of Cologne

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

92 Citations (Scopus)

Résumé

The Wiedemann-Franz (WF) law has been tested in numerous solids, but the extent of its relevance to the anomalous transverse transport and the topological nature of the wave function, remains an open question. Here, we present a study of anomalous transverse response in the noncollinear antiferromagnet Mn3Ge extended from room temperature down to sub-kelvin temperature and find that the anomalous Lorenz ratio remains close to the Sommerfeld value up to 100 K but not above. The finite-temperature violation of the WF correlation is caused by a mismatch between the thermal and electrical summations of the Berry curvature and not by inelastic scattering. This interpretation is backed by our theoretical calculations, which reveals a competition between the temperature and the Berry curvature distribution. The data accuracy is supported by verifying the anomalous Bridgman relation. The anomalous Lorenz ratio is thus an extremely sensitive probe of the Berry spectrum of a solid.

langue originaleAnglais
Numéro d'articleaaz3522
journalScience Advances
Volume6
Numéro de publication17
Les DOIs
étatPublié - 1 avr. 2020
Modification externeOui

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