Quantum phase transitions in attractive extended Bose-Hubbard Model with three-body constraint
arXiv:1103.3350 · doi:10.1103/PhysRevB.84.092503
Abstract
The effect of nearest-neighbor repulsion on the ground-state phase diagrams of three-body constrained attractive Bose lattice gases is explored numerically. When the repulsion is turned on, in addition to the uniform Mott insulating state and two superfluid phases (the atomic and the dimer superfluids), a dimer checkerboard solid state appears at unit filling, where boson pairs form a solid with checkerboard structure. We find also that the first-order transitions between the uniform Mott insulating state and the atomic superfluid state can be turned into the continuous ones as the repulsion is increased. Moreover, the stability regions of the dimer superfluid phase can be extended to modest values of the hopping parameter by tuning the strength of the repulsion. Our conclusions hence shed light on the search of the dimer superfluid phase in real ultracold Bose gases in optical lattices.
4 + epsilon pages, 5 figures. Rewritten to emphasize the effect of nonzero nearest-neighbor repulsion. Conclusions unchanged. Accepted for publication in Phys. Rev. B
References in corpus (10)
- Many-Body Physics with Ultracold Gases
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
- Atomic three-body loss as a dynamical three-body interaction
- Emerging Bosons with Three-Body Interactions from Spin-1 Atoms in Optical Lattices
- Pair Superfluidity of Three-Body Constrained Bosons in Two Dimensions
- Single-particle versus pair condensation of hard-core bosons with correlated hopping
- Homogeneous and inhomogeneous magnetic phases of constrained dipolar bosons
- Superfluid-Insulator Transitions in Attractive Bose-Hubbard Model with Three-Body Constraint
- Thermal Phase transitions in attractive extended Bose-Hubbard Model with three-body constraint
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