paper

Field-induced quantum criticality in the Kitaev system -RuCl

arXiv:1704.03475 · doi:10.1103/PhysRevB.96.041405

Abstract

-RuCl has attracted enormous attention since it has been proposed as a prime candidate to study fractionalized magnetic excitations akin to Kitaev's honeycomb-lattice spin liquid. We have performed a detailed specific-heat investigation at temperatures down to K in applied magnetic fields up to T for fields parallel to the plane. We find a suppression of the zero-field antiferromagnetic order, together with an increase of the low-temperature specific heat, with increasing field up to T. Above , the magnetic contribution to the low-temperature specific heat is strongly suppressed, implying the opening of a spin-excitation gap. Our data point toward a field-induced quantum critical point (QCP) at ; this is supported by universal scaling behavior near . Remarkably, the data also reveal the existence of a small characteristic energy scale well below ~meV above which the excitation spectrum changes qualitatively. We relate the data to theoretical calculations based on a ------ honeycomb model.

5 pages, 4 figures (main text), plus Supplemental Material