Bosonization and entanglement spectrum for one-dimensional polar bosons on disordered lattices
Quantum Gases
2015-06-12 v1
Abstract
The extended Bose-Hubbard model subjected to a disordered potential is predicted to display a rich phase diagram. In the case of uniform random disorder one finds two insulating quantum phases -- the Mott-insulator and the Haldane insulator -- in addition to a superfluid and a Bose glass phase. In the case of a quasiperiodic potential further phases are found, eg the incommensurate density wave, adiabatically connected to the Haldane insulator. For the case of weak random disorder we determine the phase boundaries using a perturbative bosonization approach. We then calculate the entanglement spectrum for both types of disorder, showing that it provides a good indication of the various phases.
Keywords
Cite
@article{arxiv.1302.0528,
title = {Bosonization and entanglement spectrum for one-dimensional polar bosons on disordered lattices},
author = {X. Deng and R. Citro and E. Orignac and A. Minguzzi and L. Santos},
journal= {arXiv preprint arXiv:1302.0528},
year = {2015}
}
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