Frustrated RVB states in 2D: classifications and short-range correlations
Abstract
Resonating valence bond (RVB) states are of crucial importance in our intuitive understanding of quantum spin liquids in 2D. We systematically classify short-range bosonic RVB states into symmetric or nematic spin liquids by examining their flux patterns. We further map short-range bosonic RVB states into projected BCS wave functions, on which we perform large-scale Monte Carlo simulations without the minus sign problem. Our results clearly show that both spin and dimer correlations decay exponentially in all the short-range frustrated (non-bipartite or ) bosonic RVB states we studied, indicating that they are gapped quantum spin liquids. Generically, we conjecture that all short-range frustrated bosonic RVB states in 2D have only short-range correlations.
Cite
@article{arxiv.1204.6381,
title = {Frustrated RVB states in 2D: classifications and short-range correlations},
author = {Fan Yang and Hong Yao},
journal= {arXiv preprint arXiv:1204.6381},
year = {2012}
}
Comments
4.3 pages + supplemental materials, 5 figures. Published in Physical Review Lettes