We establish the phase diagram of the strongly interacting Bose-Hubbard model defined on a two-leg ladder geometry in the presence of a homogeneous flux. Our work is motivated by a recent experiment [M. Atala et al., Nat. Phys. 10, 588 (2014)], which studied the same system, in the complementary regime of weak interactions. Based on extensive density matrix renormalization group simulations and a bosonization analysis, we fully explore the parameter space spanned by filling, interleg tunneling, and flux. As a main result, we demonstrate the existence of gapless and gapped Meissner and vortex phases, with the gapped states emerging in Mott-insulating regimes. We calculate experimentally accessible observables such as chiral currents and vort...
Bosons in periodic potentials with very strong local interactions, known as the constrained bosons o...
Developing a theoretical framework to access the quantum phases of itinerant bosons or fermions in t...
We establish compelling evidence for the existence of new quasi-one-dimensional descendants of the d...
We establish the phase diagram of the strongly interacting Bose-Hubbard model defined on a two-leg l...
We study the quantum phases of bosons with repulsive contact interactions on a two-leg ladder in the...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
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 trapped in a two-leg ladder potential ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
Bosons in periodic potentials with very strong local interactions, known as the constrained bosons o...
Developing a theoretical framework to access the quantum phases of itinerant bosons or fermions in t...
We establish compelling evidence for the existence of new quasi-one-dimensional descendants of the d...
We establish the phase diagram of the strongly interacting Bose-Hubbard model defined on a two-leg l...
We study the quantum phases of bosons with repulsive contact interactions on a two-leg ladder in the...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
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 trapped in a two-leg ladder potential ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We study the ground-state physics of a single-component Haldane model on a hexagonal two-leg ladder ...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
Bosons in periodic potentials with very strong local interactions, known as the constrained bosons o...
Developing a theoretical framework to access the quantum phases of itinerant bosons or fermions in t...
We establish compelling evidence for the existence of new quasi-one-dimensional descendants of the d...