We study the quantum phases of bosons with repulsive contact interactions on a two-leg ladder in the presence of a uniform Abelian gauge field. The model realizes many interesting states, including Meissner phases, vortex fluids, vortex lattices, charge density waves, and the biased-ladder phase. Our work focuses on the subset of these states that breaks a discrete symmetry. We use density matrix renormalization group simulations to demonstrate the existence of three vortex-lattice states at different vortex densities and we characterize the phase transitions from these phases into neighboring states. Furthermore, we provide an intuitive explanation of the chiral-current reversal effect that is tied to some of these vortex lattices. We also...
We study the "tilting" of Mott insulators of bosons into metastable states. These are described by H...
International audienceWe consider a two leg bosonic ladder in a U(1) gauge field with both interleg ...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
We establish the phase diagram of the strongly interacting Bose-Hubbard model defined on a two-leg l...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
We investigate the ground-state properties of ultracold atoms trapped in a two-leg ladder potential ...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We study hard core bosons on a two-leg ladder lattice under the orbital effect of a uniform magnetic...
Two-leg bosonic ladders with flux harbor a remarkable vortex-hole duality between the weak-coupling ...
The interplay between spontaneous symmetry breaking in many-body systems, the wavelike nature of qua...
The phase diagram of a half-filled hard-core boson two-leg ladder in a flux is investigated by means...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
Bosons in periodic potentials with very strong local interactions, known as the constrained bosons o...
We study the "tilting" of Mott insulators of bosons into metastable states. These are described by H...
International audienceWe consider a two leg bosonic ladder in a U(1) gauge field with both interleg ...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
We establish the phase diagram of the strongly interacting Bose-Hubbard model defined on a two-leg l...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
We investigate the ground-state properties of ultracold atoms trapped in a two-leg ladder potential ...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We study hard core bosons on a two-leg ladder lattice under the orbital effect of a uniform magnetic...
Two-leg bosonic ladders with flux harbor a remarkable vortex-hole duality between the weak-coupling ...
The interplay between spontaneous symmetry breaking in many-body systems, the wavelike nature of qua...
The phase diagram of a half-filled hard-core boson two-leg ladder in a flux is investigated by means...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
Bosons in periodic potentials with very strong local interactions, known as the constrained bosons o...
We study the "tilting" of Mott insulators of bosons into metastable states. These are described by H...
International audienceWe consider a two leg bosonic ladder in a U(1) gauge field with both interleg ...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...