Spin Wave Analysis of Low-Temperature Thermal Hall Effect in the Candidate Kitaev Spin Liquid -RuCl
arXiv:1807.03857 · doi:10.1103/PhysRevB.98.060412
Abstract
Proposed effective Hamiltonians from the literature for the material -RuCl are used to compute the magnon thermal Hall conductivity, , using linear spin wave theory for the magnetically ordered state. No model previously proposed that was tested explains published experimental data. Models with Kitaev interaction are seen to predict , which is inconsistent with the data. Fluctuations toward a Kitaev-type spin liquid would have the wrong sign to explain the data. However, a slight variant of a previously proposed model predicts a large , demonstrating that the low-temperature thermal Hall effect could be generated exclusively by the Berry curvature of the magnon bands. The experimental data of can therefore serve as another method to constrain a proposed effective Hamiltonian.
7 pages, 4 figures