A continuous transition between fractional quantum Hall and superfluid states
Strongly Correlated Electrons
2014-06-18 v1 Quantum Gases
Abstract
We develop a theory of a direct, continuous quantum phase transition between a bosonic Laughlin fractional quantum Hall (FQH) state and a superfluid, generalizing the Mott insulator to superfluid phase diagram of bosons to allow for the breaking of time-reversal symmetry. The direct transition can be protected by a spatial symmetry, and the critical theory is a pair of Dirac fermion fields coupled to an emergent Chern-Simons gauge field. The transition may be achieved in optical traps of ultracold atoms by starting with a bosonic Laughlin state and tuning an appropriate periodic potential to change the topology of the composite fermion band structure.
Cite
@article{arxiv.1201.4393,
title = {A continuous transition between fractional quantum Hall and superfluid states},
author = {Maissam Barkeshli and John McGreevy},
journal= {arXiv preprint arXiv:1201.4393},
year = {2014}
}
Comments
5+2 pages, 2 figures