Weak topological insulating phases of hard-core-bosons on the honeycomb lattice
Abstract
We study the phases of hard-core-bosons on a two-dimensional periodic honeycomb lattice in the presence of an on-site potential with alternating sign along the different y-layers of the lattice. Using quantum Monte Carlo simulations supported by analytical calculations, we identify a weak topological insulator, characterized by a zero Chern number but non-zero Berry phase, which is manifested at either density 1/4 or 3/4, as determined by the potential pattern. Additionally, a charge-density-wave insulator is observed at 1/2-filling, whereas the phase diagram at intermediate densities is occupied by a superfluid phase. The weak topological insulator is further shown to be robust against any amount of nearest-neighbor repulsion, as well as weak next-nearest-neighbor repulsion. The experimental realization of our model is feasible in an optical lattice setup.
Keywords
Cite
@article{arxiv.2010.16126,
title = {Weak topological insulating phases of hard-core-bosons on the honeycomb lattice},
author = {Amrita Ghosh and Eytan Grosfeld},
journal= {arXiv preprint arXiv:2010.16126},
year = {2021}
}
Comments
New references added. Introduction modified. A new appendix and two new figures added