We numerically study the phase diagram of bosons tightly trapped in the lowest band of an optical lattice and dispersively coupled to a single-mode cavity field. The dynamics is encompassed by an extended Bose-Hubbard model. Here, the cavity-mediated interactions are described by a two-body potential term with a global range and by a correlated tunneling term where the hopping amplitude depends on a global observable. We determine the ground state properties in one dimension by means of the density matrix renormalization group algorithm, focusing on the effects due to the correlated tunneling. The latter is responsible for the onset of bond orders, manifesting in one insulating and two gapless bond ordered phases. We discuss the resulting p...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
The Hubbard model constitutes one of the most celebrated theoretical frameworks of condensed-matter ...
We theoretically analyze the phase diagram of a quantum gas of bosons that interact via repulsive di...
We consider a minimal model to investigate the quantum phases of hardcore, polarized dipolar atoms c...
We propose an experimental realization of the time-periodically modulated Rabi frequency and suggest...
We show how bond order emerges due to light mediated synthetic interactions in ultracold atoms in op...
We investigate the mean-field phase diagram of the Bose-Hubbard model with infinite-range interactio...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We consider a one-dimensional Bose-Hubbard model (BHM) with on-site double-well potentials and study...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
We investigate the ground-state properties of a newly discovered phase of one-dimensional lattice bo...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
The Hubbard model constitutes one of the most celebrated theoretical frameworks of condensed-matter ...
We theoretically analyze the phase diagram of a quantum gas of bosons that interact via repulsive di...
We consider a minimal model to investigate the quantum phases of hardcore, polarized dipolar atoms c...
We propose an experimental realization of the time-periodically modulated Rabi frequency and suggest...
We show how bond order emerges due to light mediated synthetic interactions in ultracold atoms in op...
We investigate the mean-field phase diagram of the Bose-Hubbard model with infinite-range interactio...
We consider a condensate of ultra cold bosonic atoms in a linear optical cavity illuminated by a two...
We consider a one-dimensional Bose-Hubbard model (BHM) with on-site double-well potentials and study...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
We investigate the ground-state properties of a newly discovered phase of one-dimensional lattice bo...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
International audienceHigh-finesse optical cavity allows the establishment of long-range interaction...
Recent experiments with ultracold atoms in an optical lattice have realized cavity-mediated long-ran...
The Bose-Hubbard model describes the physics of a system of bosonic ultracold atoms in an optical la...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
The Hubbard model constitutes one of the most celebrated theoretical frameworks of condensed-matter ...