Topological flat band models with arbitrary Chern numbers
Abstract
We report the theoretical discovery of a systematic scheme to produce topological flat bands (TFBs) with arbitrary Chern numbers. We find that generically a multi-orbital high Chern number TFB model can be constructed by considering multi-layer Chern number C=1 TFB models with enhanced translational symmetry. A series of models are presented as examples, including a two-band model on a triangular lattice with a Chern number C=3 and an -band square lattice model with for an arbitrary integer . In all these models, the flatness ratio for the TFBs is larger than 30 and increases with increasing Chern number. In the presence of appropriate inter-particle interactions, these models are likely to lead to the formation of novel Abelian and Non-Abelian fractional Chern insulators. As a simple example, we test the C=2 model with hardcore bosons at 1/3 filling and an intriguing fractional quantum Hall state is observed.
Keywords
Cite
@article{arxiv.1205.5792,
title = {Topological flat band models with arbitrary Chern numbers},
author = {Shuo Yang and Zheng-Cheng Gu and Kai Sun and S. Das Sarma},
journal= {arXiv preprint arXiv:1205.5792},
year = {2013}
}
Comments
8 pages, 7 figures