We investigate the ground-state properties of ultracold atoms trapped in a two-leg ladder potential in the presence of an artificial magnetic field in a staggered configuration. We focus on the strongly interacting regime and use the Landau theory of phase transitions and a mean field Gutzwiller variational method to identify the stable superfluid phases and their boundaries with the Mott-insulator regime as a function of magnetic flux. In addition, we calculate the local and chiral currents of these superfluid phases, which show a staggered vortex-antivortex configuration. The analytical results are confirmed by numerical simulations using a cluster mean-field-theory approach
We study theoretically the ground states of two-dimensional Bose-Hubbard models which are frustrated...
We consider a two-leg Bose-Hubbard ladder in the presence of a magnetic flux. We make use of Gross-P...
We consider the Bose-Hubbard model on a two-leg ladder under an artificial magnetic field and invest...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
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...
AbstractIn view of strongly interacting bosons in an optical lattice with a large gauge field, we st...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
Motivated by experiments on Josephson junction arrays, and cold atoms in an optical lattice in a syn...
Motivated by experiments on Josephson junction arrays in a magnetic field and ultracold interacting ...
This thesis concerns ultracold two-dimensional atomic gases and the associated novel superfluid phas...
We study theoretically the ground states of two-dimensional Bose-Hubbard models which are frustrated...
We consider a two-leg Bose-Hubbard ladder in the presence of a magnetic flux. We make use of Gross-P...
We consider the Bose-Hubbard model on a two-leg ladder under an artificial magnetic field and invest...
We investigate the ground-state properties of ultracold atoms with long-range interactions trapped i...
We perform a density-matrix renormalization-group study of strongly interacting bosons on a three-le...
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...
AbstractIn view of strongly interacting bosons in an optical lattice with a large gauge field, we st...
Using the cluster Gutzwiller mean-field method, we numerically study the ground-state phase diagram ...
A boson two-leg ladder in the presence of a synthetic magnetic flux is investigated by means of boso...
We consider a two-leg boson ladder in artificial gauge field with hard-core intraleg and negligible ...
Nonstandard Bose-Hubbard models can exhibit rich ground-state phase diagrams, even when considering ...
Motivated by experiments on Josephson junction arrays, and cold atoms in an optical lattice in a syn...
Motivated by experiments on Josephson junction arrays in a magnetic field and ultracold interacting ...
This thesis concerns ultracold two-dimensional atomic gases and the associated novel superfluid phas...
We study theoretically the ground states of two-dimensional Bose-Hubbard models which are frustrated...
We consider a two-leg Bose-Hubbard ladder in the presence of a magnetic flux. We make use of Gross-P...
We consider the Bose-Hubbard model on a two-leg ladder under an artificial magnetic field and invest...