Li Han, Zhang Hao-Kai, Wang Jiucai, Wu Han-Qing, Gao Yuan, Qu Dai-Wei, Liu Zheng-Xin, Gong Shou-Shu, Li Wei
School of Physics, Beihang University, Beijing, China.
Institute for Advanced Study, Tsinghua University, Beijing, China.
Nat Commun. 2021 Jun 29;12(1):4007. doi: 10.1038/s41467-021-24257-8.
The frustrated magnet α-RuCl constitutes a fascinating quantum material platform that harbors the intriguing Kitaev physics. However, a consensus on its intricate spin interactions and field-induced quantum phases has not been reached yet. Here we exploit multiple state-of-the-art many-body methods and determine the microscopic spin model that quantitatively explains major observations in α-RuCl, including the zigzag order, double-peak specific heat, magnetic anisotropy, and the characteristic M-star dynamical spin structure, etc. According to our model simulations, the in-plane field drives the system into the polarized phase at about 7 T and a thermal fractionalization occurs at finite temperature, reconciling observations in different experiments. Under out-of-plane fields, the zigzag order is suppressed at 35 T, above which, and below a polarization field of 100 T level, there emerges a field-induced quantum spin liquid. The fractional entropy and algebraic low-temperature specific heat unveil the nature of a gapless spin liquid, which can be explored in high-field measurements on α-RuCl.
受挫磁体α - RuCl构成了一个迷人的量子材料平台,其中蕴含着引人入胜的基塔耶夫物理现象。然而,对于其复杂的自旋相互作用和场诱导量子相尚未达成共识。在此,我们运用多种先进的多体方法,确定了微观自旋模型,该模型定量解释了α - RuCl中的主要观测结果,包括锯齿状序、双峰比热、磁各向异性以及特征性的M星动态自旋结构等。根据我们的模型模拟,面内场在约7 T时将系统驱动到极化相,并且在有限温度下会发生热分数化,这与不同实验中的观测结果相符。在面外场作用下,锯齿状序在35 T时被抑制,高于此值且低于100 T量级的极化场时,会出现场诱导量子自旋液体。分数熵和代数低温比热揭示了无隙自旋液体的本质,这可以在对α - RuCl的高场测量中进行探索。