Anomalous enhancement of the Nernst effect at the crossover between a Fermi liquid and a strange metal

能斯特效应 能斯特方程 凝聚态物理 物理 费米液体理论 超导电性 准粒子 铜酸盐 量子力学 电极
作者
Yusen Yang,Tao Qian,Yuqiang Fang,Guoxiong Tang,Chao Yao,Xiaoxian Yan,Chenxi Jiang,Xiangfan Xu,Fuqiang Huang,Wenxin Ding,Yu Wang,Zhiqiang Mao,Hui Xing,Zhu‐An Xu
出处
期刊:Nature Physics [Springer Nature]
卷期号:19 (3): 379-385 被引量:23
标识
DOI:10.1038/s41567-022-01904-5
摘要

The strange-metal state is a crucial problem in condensed matter physics highlighted by its ubiquity in almost all major correlated systems[1-7]. Its understanding could provide important insight into high-Tc superconductivity[2] and quantum criticality[8]. However, with the Fermi liquid theory failing in strange metals, understanding the highly unconventional behaviors has been a long-standing challenge. Fundamental aspects of strange metals remain elusive, including the nature of their charge carriers[1]. Here, we report the observation of a giant Nernst response in the strange-metal state in a two-dimensional superconductor 2M-WS2. A giant Nernst coefficient comparable to the vortex Nernst signal in superconducting cuprates, and its high sensitivity to carrier mobility, are found when the system enters the strange-metal state from the Fermi liquid state. The temperature and magnetic field dependence of the giant Nernst peak rule out the relevance of both Landau quasiparticles and superconductivity. Instead, the giant Nernst peak at the crossover indicates a dramatic change in carrier entropy when entering the strange-metal state. The presence of such an anomalous Nernst response is further confirmed in other iconic strange metals, suggesting its universality and places stringent experimental constraints on the mechanism of strange metals.
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