Twisted Quantum Double Model of Topological Phases in Two--Dimension
Abstract
We propose a new discrete model---the twisted quantum double model---of 2D topological phases based on a finite group and a 3-cocycle over . The detailed properties of the ground states are studied, and we find that the ground--state subspace can be characterized in terms of the twisted quantum double of . When is the trivial 3-cocycle, the model becomes Kitaev's quantum double model based on the finite group , in which the elementary excitations are known to be classified by the quantum double of . Our model can be viewed as a Hamiltonian extension of the Dijkgraaf--Witten topological gauge theories to the discrete graph case with gauge group being a finite group. We also demonstrate a duality between a large class of Levin-Wen string-net models and certain twisted quantum double models, by mapping the string--net 6j symbols to the corresponding 3-cocycles. The paper is presented in a way such that it is accessible to a wide range of physicists.
Keywords
Cite
@article{arxiv.1211.3695,
title = {Twisted Quantum Double Model of Topological Phases in Two--Dimension},
author = {Yuting Hu and Yidun Wan and Yong-Shi Wu},
journal= {arXiv preprint arXiv:1211.3695},
year = {2013}
}
Comments
37 pages, Revtex4, one appendix added, typos correct, published in PRB