Quantum phases and spin liquid properties of 1T-TaS2

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作者
Samuel Mañas-Valero
Benjamin M. Huddart
Tom Lancaster
Eugenio Coronado
Francis L. Pratt
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[1] Universidad de Valencia (ICMol),Centre for Materials Physics
[2] Catedrático José Beltrán Martínez,ISIS Neutron and Muon Source
[3] Durham University,undefined
[4] STFC Rutherford Appleton Laboratory,undefined
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Quantum materials exhibiting magnetic frustration are connected to diverse phenomena, including high Tc superconductivity, topological order, and quantum spin liquids (QSLs). A QSL is a quantum phase (QP) related to a quantum-entangled fluid-like state of matter. Previous experiments on QSL candidate materials are usually interpreted in terms of a single QP, although theories indicate that many distinct QPs are closely competing in typical frustrated spin models. Here we report on combined temperature-dependent muon spin relaxation and specific heat measurements for the triangular-lattice QSL candidate material 1T-TaS2 that provide evidence for competing QPs. The measured properties are assigned to arrays of individual QSL layers within the layered charge density wave structure of 1T-TaS2 and their characteristic parameters can be interpreted as those of distinct Z2 QSL phases. The present results reveal that a QSL description can extend beyond the lowest temperatures, offering an additional perspective in the search for such materials.
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