Spin nematics next to spin singlets
Abstract
We provide a route to generate nematic order in a spin-1/2 system. Unlike the well-known magnon-binding mechanism, our spin nematics requires neigher the frustration effect nor a spin polarization in a high field or in the vicinity of a ferromagnet, but instead appears next to the spin singlet phase. We start from a state consisting of a quantum spin-1/2 singlet dimer placed on each site of a triangular lattice, and show that inter-dimer ring exchange interactions efficiently dope the SU(2) triplets that itinerate and interact, easily driving a stable singlet state to either Bose Einstein condensates or a triplet crystal, some hosting a spin nematic order. A variety of roles the ring exchange serves include the generation of a bilinear-biquadratic interaction between nearby triplets, which is responsible for the emergent nematic order separated from the singlet phase by a first order transition.
Keywords
Cite
@article{arxiv.1805.07910,
title = {Spin nematics next to spin singlets},
author = {Yuto Yokoyama and Chisa Hotta},
journal= {arXiv preprint arXiv:1805.07910},
year = {2018}
}
Comments
6 pages , 4 figures