Incipient and well-developed entropy plateaus in spin-S Kitaev models
arXiv:1809.10112 · doi:10.1103/PhysRevB.98.214404
Abstract
We present results on entropy and heat-capacity of the spin-S honeycomb-lattice Kitaev models using high-temperature series expansions and thermal pure quantum (TPQ) state methods. We study models with anisotropic couplings for spin values 1/2, 1, 3/2, and 2. We show that for , any anisotropy leads to well developed plateaus in the entropy function at an entropy value of , independent of . However, in the absence of anisotropy, there is an incipient entropy plateau at , where is the infinite temperature entropy of the system. We discuss possible underlying microscopic reasons for the origin and implications of these entropy plateaus.
6 pages and 11 figures