English

Floquet Topological States in Shaking Optical Lattices

Quantum Gases 2014-07-02 v1

Abstract

In this letter we propose realistic schemes to realize topologically nontrivial Floquet states by shaking optical lattices, using both one-dimension lattice and two-dimensional honeycomb lattice as examples. The topological phase in the two-dimensional model exhibits quantum anomalous Hall effect. The transition between topological trivial and nontrivial states can be easily controlled by shaking frequency and amplitude. Our schemes have two major advantages. First, both the static Hamiltonian and the shaking scheme are sufficiently simple to implement. Secondly, it requires relatively small shaking amplitude and therefore heating can be minimized. These two advantages make our scheme much more practical.

Keywords

Cite

@article{arxiv.1402.4034,
  title  = {Floquet Topological States in Shaking Optical Lattices},
  author = {Wei Zheng and Hui Zhai},
  journal= {arXiv preprint arXiv:1402.4034},
  year   = {2014}
}

Comments

6 pages including supplementary materials, 3 figures