Exotic low-energy excitations emergent in the random Kitaev magnet CuIrO
arXiv:1811.07002 · doi:10.1103/PhysRevLett.122.167202
Abstract
We report on magnetization , dc/ac magnetic susceptibility , specific heat and muon spin relaxation (SR) measurements of the Kitaev honeycomb iridate CuIrO with quenched disorder. In spite of the chemical disorders, we find no indication of spin glass down to 260~mK from the and SR data. Furthermore, a persistent spin dynamics observed by the zero-field muon spin relaxation evidences an absence of static magnetism. The remarkable observation is a scaling relation of and in with the scaling exponent , expected from bond randomness. However, disobeys the predicted universal scaling law, pointing towards the presence of low-lying excitations in addition to random singlets. Our results signify an intriguing role of quenched disorder in a Kitaev spin system in creating low-energy excitations possibly pertaining to Z fluxes.