Nearest-neighbour resonating valence bonds in YbMgGaO4

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作者
Yuesheng Li
Devashibhai Adroja
David Voneshen
Robert I. Bewley
Qingming Zhang
Alexander A. Tsirlin
Philipp Gegenwart
机构
[1] Experimental Physics VI,Department of Physics
[2] Center for Electronic Correlations and Magnetism,Physics Department
[3] University of Augsburg,Department of Physics and Astronomy
[4] Renmin University of China,undefined
[5] ISIS Pulsed Neutron and Muon Source,undefined
[6] STFC Rutherford Appleton Laboratory,undefined
[7] Harwell Campus,undefined
[8] Highly Correlated Matter Research Group,undefined
[9] University of Johannesburg,undefined
[10] Shanghai Jiao Tong University,undefined
[11] Collaborative Innovation Center of Advanced Microstructures,undefined
[12] Nanjing 210093,undefined
[13] China,undefined
来源
Nature Communications | / 8卷
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摘要
Since its proposal by Anderson, resonating valence bonds (RVB) formed by a superposition of fluctuating singlet pairs have been a paradigmatic concept in understanding quantum spin liquids. Here, we show that excitations related to singlet breaking on nearest-neighbour bonds describe the high-energy part of the excitation spectrum in YbMgGaO4, the effective spin-1/2 frustrated antiferromagnet on the triangular lattice, as originally considered by Anderson. By a thorough single-crystal inelastic neutron scattering study, we demonstrate that nearest-neighbour RVB excitations account for the bulk of the spectral weight above 0.5 meV. This renders YbMgGaO4 the first experimental system where putative RVB correlations restricted to nearest neighbours are observed, and poses a fundamental question of how complex interactions on the triangular lattice conspire to form this unique many-body state.
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