English

Entanglement in gapless resonating valence bond states

Strongly Correlated Electrons 2015-03-20 v2 Statistical Mechanics

Abstract

We study resonating-valence-bond (RVB) states on the square lattice of spins and of dimers, as well as SU(N)-invariant states that interpolate between the two. These states are ground states of gapless models, although the SU(2)-invariant spin RVB state is also believed to be a gapped liquid in its spinful sector. We show that the gapless behavior in spin and dimer RVB states is qualitatively similar by studying the R\'enyi entropy for splitting a torus into two cylinders, We compute this exactly for dimers, showing it behaves similarly to the familiar one-dimensional log term, although not identically. We extend the exact computation to an effective theory believed to interpolate among these states. By numerical calculations for the SU(2) RVB state and its SU(N)-invariant generalizations, we provide further support for this belief. We also show how the entanglement entropy behaves qualitatively differently for different values of the R\'enyi index nn, with large values of nn proving a more sensitive probe here, by virtue of exhibiting a striking even/odd effect.

Keywords

Cite

@article{arxiv.1207.3820,
  title  = {Entanglement in gapless resonating valence bond states},
  author = {Jean-Marie Stéphan and Hyejin Ju and Paul Fendley and Roger G. Melko},
  journal= {arXiv preprint arXiv:1207.3820},
  year   = {2015}
}

Comments

44 pages, 14 figures, published version