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Abstract
The frustrated magnet α-RuCl3 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-RuCl3, 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-RuCl3.
The nature of spin interactions and the field-induced quantum spin liquid phase in the Kitaev material α-RuCl3 have been debated. Here, using a combination of many-body techniques, the authors derive an effective spin model that explains the majority of experimental findings and predicts a new quantum spin liquid phase in strong out-of-plane magnetic field.
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1 Beihang University, School of Physics, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211)
2 Beihang University, School of Physics, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211); Tsinghua University, Institute for Advanced Study, Beijing, China (GRID:grid.12527.33) (ISNI:0000 0001 0662 3178)
3 Tsinghua University, Institute for Advanced Study, Beijing, China (GRID:grid.12527.33) (ISNI:0000 0001 0662 3178); Renmin University of China, Department of Physics, Beijing, China (GRID:grid.24539.39) (ISNI:0000 0004 0368 8103)
4 Sun Yat-sen University, Center for Neutron Science and Technology, School of Physics, Guangzhou, China (GRID:grid.12981.33) (ISNI:0000 0001 2360 039X)
5 Renmin University of China, Department of Physics, Beijing, China (GRID:grid.24539.39) (ISNI:0000 0004 0368 8103)
6 Beihang University, School of Physics, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211); Beihang University, International Research Institute of Multidisciplinary Science, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211)
7 Beihang University, School of Physics, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211); Beihang University, International Research Institute of Multidisciplinary Science, Beijing, China (GRID:grid.64939.31) (ISNI:0000 0000 9999 1211); Chinese Academy of Sciences, Institute of Theoretical Physics, Beijing, China (GRID:grid.9227.e) (ISNI:0000000119573309)