Commensurate Supersolid of Three-Dimensional Lattice Bosons
Abstract
Using an unbiased quantum Monte Carlo method, we obtain convincing evidence of the existence of a checkerboard supersolid at a {\it commensurate} filling factor 1/2 (commensurate supersolid) in the soft-core Bose-Hubbard model with nearest-neighbor repulsions on a cubic lattice. In conventional cases, supersolids are realized at incommensurate filling factors by a doped-defect-condensation mechanism, where particles (holes) doped into a perfect crystal act as interstitials (vacancies) and delocalize in the crystal order. However, in the above model, a supersolid state is stabilized even at the commensurate filling factor 1/2 {\it without doping}. By performing grand canonical simulations, we obtain a ground-state phase diagram that suggests the existence of a supersolid at a commensurate filling. To obtain direct evidence of the commensurate supersolid, we next perform simulations in canonical ensembles at a particle density and exclude the possibility of phase separation. From the obtained snapshots, we discuss the microscopic structure and observe that interstitial-vacancy pairs are unbound in the crystal order.
Keywords
Cite
@article{arxiv.1110.5261,
title = {Commensurate Supersolid of Three-Dimensional Lattice Bosons},
author = {Takahiro Ohgoe and Takafumi Suzuki and Naoki Kawashima},
journal= {arXiv preprint arXiv:1110.5261},
year = {2012}
}
Comments
accepted in Phys. Rev. Lett