凝聚态物理
热霍尔效应
霍尔效应
热导率
材料科学
能斯特效应
声子
准粒子
量子霍尔效应
热传导
高定向热解石墨
声子拖拽
马格农
热电效应
热电材料
塞贝克系数
载流子
石墨
物理
双极扩散
朗道量子化
Wiedemann–Franz law
热流
热的
热扩散率
半金属
能斯特方程
热解炭
电阻率和电导率
作者
Qi Xiang,Xiaokang Li,Xiaodong Guo,Zengwei Zhu,Kamran Behnia
摘要
It is now known that in addition to electrons, other quasiparticles such as phonons and magnons can also generate a thermal Hall signal. Graphite is a semimetal with extremely mobile charge carriers of both signs and a large lattice thermal conductivity. We present a study of the thermal Hall effect in highly oriented pyrolytic graphite (HOPG) samples with electronic, phononic, and phonon drag contributions to the thermal Hall signal. The measured thermal Hall conductivity (κ_{xy}) is 2 orders of magnitude higher than what is expected by electronic carriers according to the electrical Hall conductivity and the Wiedemann-Franz law, yielding a record Hall Lorenz number of 164.9×10^{-8} V^{2} K^{-2} (∼67L_{0})-the largest ever observed in a metal. The temperature dependence of the thermal Hall conductivity significantly differs from its longitudinal counterpart, ruling out a purely phononic origin of the nonelectronic component. Based on the temperature dependence and the amplitudes of the Seebeck and Nernst responses, we demonstrate that ambipolar phonon drag dominates the thermal Hall response of graphite.
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