Motivated by the recent progress in realizing and controlling extended Bose-Hubbard systems using excitonic or atomic devices, the present Letter theoretically investigates the case of a two-band Bose-Hubbard chain with nearest-neighbor interactions. Specifically, this study concentrates on the scenario where, due to the interactions, one band supports a density wave phase, i.e. a correlated insulating phase with spontaneous breaking of translational symmetry in the lattice, while the other band supports superfluid behavior. Using the density matrix renormalization group method, we show that supersolid order can emerge from such a combination, that is, an elusive quantum state that combines crystalline order with long-range phase coherence....
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
Systems with competing orders are of great interest in condensed matter physics. When two phases ha...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We use quantum Monte Carlo simulations with the worm algorithm to study the phase diagram of a two-...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
Recent studies have suggested a new phase in the extended Bose-Hubbard model in one dimension at int...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
We investigate the phase diagram of a dimerized Bose-Hubbard model, using a density matrix renormali...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
Systems with competing orders are of great interest in condensed matter physics. When two phases ha...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...
We use quantum Monte Carlo simulations with the worm algorithm to study the phase diagram of a two-...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
Recent studies have suggested a new phase in the extended Bose-Hubbard model in one dimension at int...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
We investigate the phase diagram of a dimerized Bose-Hubbard model, using a density matrix renormali...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
By means of the density matrix renormalization group technique, we accurately determine the zero-tem...
Recent experiments on strongly interacting bosons in optical lattices have revealed the coexistence ...
We use the Density Matrix Renormalization Group and the Abelian bosonization method to study the eff...
Systems with competing orders are of great interest in condensed matter physics. When two phases ha...
We report our findings on the quantum phase transitions in cold bosonic atoms in a one-dimensional...