Observation of a random singlet state in a diluted Kitaev honeycomb material
arXiv:2005.13836 · doi:10.1103/PhysRevB.102.094407
Abstract
We report a Cl nuclear magnetic resonance (NMR) study of the diluted Kitaev material -RuIrCl ( and ) where non-magnetic Ir dopants substitute Ru ions. Upon dilution, the Cl spectra exhibit unusual large magnetic inhomogeneity, which sets in at temperatures below the Kitaev exchange energy scale. At the same time, the Cl spin-lattice relaxation rate as a function of dilution and magnetic field unravels a critical doping of , towards which both the field-induced spin gap and the zero-field magnetic ordering are simultaneously suppressed, while novel gapless low-energy spin excitations dominate the relaxation process. These NMR findings point to the stabilization of a random singlet phase in -RuIrCl, arising from the interplay of dilution and exchange frustration in the quantum limit.
5 pages, 2 figures, Publilished in PRB
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Cited by in corpus (3)
- High-field thermal transport properties of the Kitaev quantum magnet alpha-RuCl3: evidence for low-energy excitations beyond the critical field
- Susceptibility anisotropy and its disorder evolution in models for Kitaev materials
- Randomness and Frustration in a S = 1/2 Square-Lattice Heisenberg Antiferromagnet