之字形的
物理
凝聚态物理
反铁磁性
振荡(细胞信号)
振幅
磁场
量子自旋液体
自旋(空气动力学)
挫折感
热导率
量子力学
电子
自旋极化
热力学
化学
生物化学
数学
几何学
作者
Peter Czajka,Tong Gao,Max Hirschberger,Paula Lampen-Kelley,Arnab Banerjee,Jiaqiang Yan,David Mandrus,S. E. Nagler,N. P. Ong
出处
期刊:Nature Physics
[Nature Portfolio]
日期:2021-05-13
卷期号:17 (8): 915-919
被引量:161
标识
DOI:10.1038/s41567-021-01243-x
摘要
In the class of materials called spin liquids1–3, a magnetically ordered state cannot be attained even at millikelvin temperatures because of conflicting constraints on each spin; for example, from geometric or exchange frustration. The resulting quantum spin-liquid state is currently of intense interest because it exhibits unusual excitations as well as wave-function entanglement. The layered insulator α-RuCl3 orders as a zigzag antiferromagnet at low temperature in zero magnetic field4. The zigzag order is destroyed when a magnetic field is applied parallel to the zigzag axis. At moderate magnetic field strength, there is growing evidence that a quantum spin-liquid state exists. Here we report the observation of oscillations in its thermal conductivity in that field range. The oscillations, whose amplitude is very large within this field range and strongly suppressed on either side, are periodic. This is analogous to quantum oscillations in metals, even though α-RuCl3 is an excellent insulator with a large gap. As the temperature is raised above 0.5 K, the oscillation amplitude decreases exponentially, anticorrelating with the emergence of an anomalous planar thermal Hall conductivity above approximately 2 K. Transport measurements on the Kitaev quantum spin liquid candidate α-RuCl3 subjected to a magnetic field reveal oscillating behaviour in its thermal conductivity, reminiscent of Shubnikov de Haas oscillations in metals.
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