Model for frustrated spin-orbital chains: application to CaV2O4
Abstract
Motivated by recent interest in quasi-one-dimensional compound CaV2O4, we study the ground states of a spin-orbital chain characterized by an Ising-like orbital Hamiltonian and frustrated interactions between S=1 spins. The on-site spin-orbit interaction and Jahn-Teller effect compete with inter-site superexchange leading to a rich phase diagram in which an antiferro-orbital phase is separated from the orbital paramagnet by a continuous Ising transition. Two distinct spin liquids depending on the underlying orbital order are found in the limit of small spin-orbit coupling. In the opposite limit, the zigzag chain behaves as a spin-2 chain with Ising anisotropy. The implications for CaV2O4 are discussed.
Cite
@article{arxiv.0907.3006,
title = {Model for frustrated spin-orbital chains: application to CaV2O4},
author = {Gia-Wei Chern and Natalia Perkins},
journal= {arXiv preprint arXiv:0907.3006},
year = {2010}
}
Comments
5 pages, revised discussion of spin-liquid phases