Quantum Phase Transition between Z2 spin liquid and columnar Valence Bond Crystals on a Triangular lattice
Abstract
We study the quantum phase transition between the spin liquid and valence bond solid (VBS) orders on a triangular lattice. With a fully isotropic triangular lattice, the transition from a columnar or resonating-plaquette VBS order can be either first order or there could be two transitions with an intermediate phase. If the transition splits into two, then the spin liquid will first experience a first order Potts transition to a new nematic spin liquid that breaks the lattice rotation symmetry (but retain translation symmetry unlike the VBS states). The second transition will then take this new nematic spin liquid to a columnar or resonating-plaquette VBS state through a second order XY transition. On a distorted triangular lattice, the degeneracy between some of the different columnar VBS orders is lifted, and the phase transition can reduce to a single XY transition.
Cite
@article{arxiv.1305.5553,
title = {Quantum Phase Transition between Z2 spin liquid and columnar Valence Bond Crystals on a Triangular lattice},
author = {Kevin Slagle and Cenke Xu},
journal= {arXiv preprint arXiv:1305.5553},
year = {2015}
}
Comments
7 pages, 4 figures