We investigate the effect of a rotating Bose-Einstein condensate on a system of immersed impurity atoms trapped by an optical lattice. We analytically show that for a one-dimensional, ring-shaped setup the coupling of the impurities to the Bogoliubov phonons of the condensate leads to a non-trivial phase in the impurity hopping. The presence of this phase can be tested by observing a drift in the transport properties of the impurities. These results are quantitatively confirmed by a numerically exact simulation of a two-mode Bose-Hubbard model. We also give analytical expressions for the occurring phase terms for a two-dimensional setup. The phase realises an artificial magnetic field and can, for instance, be used for the simulation of the...
When a neutral atom moves in a properly designed laser field, its center-of-mass motion may mimic th...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...
5+11 pages, 1 figureThe Phonon Hall Viscosity is the leading term evincing time-reversal symmetry br...
We investigate the effect of a rotating Bose-Einstein condensate on a system of immersed impurity a...
A Bose-Einstein condensate exhibiting a nontrivial phase induces an artificial magnetic field in imm...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
Both mixtures of atomic Bose-Einstein condensates and systems with atoms trapped in optical lattices...
An important new development in the field of ultracold atomic gases is the study of the properties ...
We investigate the effects of a nearly uniform Bose-Einstein condensate (BEC) on the properties of i...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
We investigate the dynamics of neutral atoms in a 2D optical lattice which traps two distinct intern...
Ultracold atoms in optical lattices can be used to model condensed matter systems. They provide a cl...
We investigate the formation of magnetic Bose polaron, an impurity atom dressed by spin-wave excitat...
A quantum simulator is a well-controlled quantum system which can be used to simulate another quantu...
We investigate the ground-state phase diagram of interacting binary Bose gases trapped in two-dimens...
When a neutral atom moves in a properly designed laser field, its center-of-mass motion may mimic th...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...
5+11 pages, 1 figureThe Phonon Hall Viscosity is the leading term evincing time-reversal symmetry br...
We investigate the effect of a rotating Bose-Einstein condensate on a system of immersed impurity a...
A Bose-Einstein condensate exhibiting a nontrivial phase induces an artificial magnetic field in imm...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
Both mixtures of atomic Bose-Einstein condensates and systems with atoms trapped in optical lattices...
An important new development in the field of ultracold atomic gases is the study of the properties ...
We investigate the effects of a nearly uniform Bose-Einstein condensate (BEC) on the properties of i...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
We investigate the dynamics of neutral atoms in a 2D optical lattice which traps two distinct intern...
Ultracold atoms in optical lattices can be used to model condensed matter systems. They provide a cl...
We investigate the formation of magnetic Bose polaron, an impurity atom dressed by spin-wave excitat...
A quantum simulator is a well-controlled quantum system which can be used to simulate another quantu...
We investigate the ground-state phase diagram of interacting binary Bose gases trapped in two-dimens...
When a neutral atom moves in a properly designed laser field, its center-of-mass motion may mimic th...
Atoms in optical lattices are promising candidates to implement quantum information processing. Thei...
5+11 pages, 1 figureThe Phonon Hall Viscosity is the leading term evincing time-reversal symmetry br...