Anomalously low electronic thermal conductivity in metallic vanadium dioxide

  • Lee, Sangwook
  • Hippalgaonkar, Kedar
  • Yang, Fan
  • Hong, Jiawang
  • Ko, Changhyun
  • 외 9명
Citations

WEB OF SCIENCE

392
Citations

SCOPUS

387

초록

In electrically conductive solids, the Wiedemann-Franz law requires the electronic contribution to thermal conductivity to be proportional to electrical conductivity. Violations of the Wiedemann-Franz law are typically an indication of unconventional quasiparticle dynamics, such as inelastic scattering, or hydrodynamic collective motion of charge carriers, typically pronounced only at cryogenic temperatures. We report an order-of-magnitude breakdown of the Wiedemann-Franz law at high temperatures ranging from 240 to 340 kelvin in metallic vanadium dioxide in the vicinity of its metal-insulator transition. Different from previously established mechanisms, the unusually low electronic thermal conductivity is a signature of the absence of quasiparticles in a strongly correlated electron fluid where heat and charge diffuse independently.

제목
Anomalously low electronic thermal conductivity in metallic vanadium dioxide
저자
Lee, SangwookHippalgaonkar, KedarYang, FanHong, JiawangKo, ChanghyunSuh, JoonkiLiu, KaiWang, KevinUrban, Jeffrey J.Zhang, XiangDames, ChrisHartnoll, Sean A.Delaire, OlivierWu, Junqiao
DOI
10.1126/science.aag0410
발행일
2017-01
저널명
Science
355
6323
페이지
371 ~ 374