Ultracold atoms in optical lattices serve as a tool to model different physical phenomena appearing originally in condensed matter. To study magnetic phenomena one needs to engineer synthetic fields as atoms are neutral. Appropriately shaped optical potentials force atoms to mimic charged particles moving in a given field. We present the realization of artificial gauge fields for the observation of anomalous Hall effect. Two species of attractively interacting ultracold fermions are considered to be trapped in a shaken two dimensional triangular lattice. A combination of interaction induced tunneling and shaking can result in an emergent Dice lattice. In such a lattice the staggered synthetic magnetic flux appears and it can be controlled w...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
In 1996, Lloyd [1] showed that the dynamics of complex many-body quantum systems can be efficiently ...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
We propose a hexagonal optical lattice system with spatial variations in the hopping matrix elements...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
Journals published by the American Physical Society can be found at http://publish.aps.org/We propos...
14 pages, 12 figuresThe Hall effect, originating from the motion of charged particles in magnetic fi...
The Hall effect, which originates from the motion of charged particles in magnetic fields, has deep ...
The Hall effect, originating from the motion of charged particles in magnetic fields, has deep conse...
We propose a general strategy for generating synthetic magnetic fields in complex lattices with non-...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
An innovative way to produce quantum Hall ribbons in a cold atomic system is to use M hyperfine stat...
We compare magnetism in two artificial lattice structures, a quantum dot array formed in a two-dimen...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
In 1996, Lloyd [1] showed that the dynamics of complex many-body quantum systems can be efficiently ...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
We propose a hexagonal optical lattice system with spatial variations in the hopping matrix elements...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
Journals published by the American Physical Society can be found at http://publish.aps.org/We propos...
14 pages, 12 figuresThe Hall effect, originating from the motion of charged particles in magnetic fi...
The Hall effect, which originates from the motion of charged particles in magnetic fields, has deep ...
The Hall effect, originating from the motion of charged particles in magnetic fields, has deep conse...
We propose a general strategy for generating synthetic magnetic fields in complex lattices with non-...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
An innovative way to produce quantum Hall ribbons in a cold atomic system is to use M hyperfine stat...
We compare magnetism in two artificial lattice structures, a quantum dot array formed in a two-dimen...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
The present thesis studies a variety of cold atomic systems in artificial gauge fields. In the first...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
In 1996, Lloyd [1] showed that the dynamics of complex many-body quantum systems can be efficiently ...