Interaction-induced excited-band condensate in a double-well optical lattice
Abstract
We show theoretically that interaction effects in a double-well optical lattice can induce condensates in an excited band. For a symmetric double-well lattice, bosons condense into the bottom of the excited band at the edge of the Brillouin Zone if the chemical potential is above a critical value. For an asymmetric lattice, a condensate with zero momentum is automatically induced in the excited band by the condensate in the lowest band. This is due to a combined effect of interaction and lattice potential, which reduces the band gap and breaks the inversion symmetry. Our work can be generalized to a superlattice composed of multiple-well potentials at each lattice site, where condensates can be induced in even higher bands.
Keywords
Cite
@article{arxiv.1105.0012,
title = {Interaction-induced excited-band condensate in a double-well optical lattice},
author = {Qi Zhou and J. V. Porto and S. Das Sarma},
journal= {arXiv preprint arXiv:1105.0012},
year = {2015}
}
Comments
4pages, 3 figures