The theoretical basis leading to the creation of a light field with a hexagonal honeycomb structure resembling graphene is considered along with its experimental realization and its interaction with atoms. It is argued that associated with such a light field is an optical dipole potential which leads to the diffraction of the atoms, but the details depend on whether the transverse spread of the atomic wave packet is larger than the transverse dimensions of the optical lattice (resonant Kapitza-Dirac effect) or smaller (optical Stern-Gerlach effect). Another effect in this context involves the creation of gauge fields due to the Berry phase acquired by the atom moving in the light field. The experimental realization of the light field with a...
We consider a two-dimensional homogeneous ensemble of cold bosonic atoms loaded inside two optical c...
Atom optical analoga exist for many light-optical elements likemirrors, lenses and beam splitters. ...
The low-energy spectrum of a particle in planar honeycomb lattices is conical, which leads to the un...
The theoretical basis leading to the creation of a light field with a hexagonal honeycomb structure ...
Lasers with wavelengths of the order of the atomic size are becoming available. We explore...
Ultracold atomic gases trapped at the interference of coherent beams of light constitute an artifici...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
A classical realization of the atom-field interaction Hamiltonian, based on the transport of light i...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We present a new model to realize artificial 2D lattices with cold atoms investigating the atomic ar...
In recent years, the interplay between condensed matter physics and optics has resulted into several...
PACS 67.85.-d – Ultracold gases, trapped gases Abstract –We present a new model to realize artificia...
Graphene, a two dimensional honeycomb structure comprised of carbon atoms, has\ud sparked great inte...
In this work we present an optical lattice setup to realize a full Dirac Hamilto-nian in 2+1 dimensi...
The physics of optical vortices, also known as twisted light, is now a well-established and a growin...
We consider a two-dimensional homogeneous ensemble of cold bosonic atoms loaded inside two optical c...
Atom optical analoga exist for many light-optical elements likemirrors, lenses and beam splitters. ...
The low-energy spectrum of a particle in planar honeycomb lattices is conical, which leads to the un...
The theoretical basis leading to the creation of a light field with a hexagonal honeycomb structure ...
Lasers with wavelengths of the order of the atomic size are becoming available. We explore...
Ultracold atomic gases trapped at the interference of coherent beams of light constitute an artifici...
Seminar Goethe University, Frankfurt, Germany, 18-04-2013Ultracold atomic gases in optical lattices ...
A classical realization of the atom-field interaction Hamiltonian, based on the transport of light i...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We present a new model to realize artificial 2D lattices with cold atoms investigating the atomic ar...
In recent years, the interplay between condensed matter physics and optics has resulted into several...
PACS 67.85.-d – Ultracold gases, trapped gases Abstract –We present a new model to realize artificia...
Graphene, a two dimensional honeycomb structure comprised of carbon atoms, has\ud sparked great inte...
In this work we present an optical lattice setup to realize a full Dirac Hamilto-nian in 2+1 dimensi...
The physics of optical vortices, also known as twisted light, is now a well-established and a growin...
We consider a two-dimensional homogeneous ensemble of cold bosonic atoms loaded inside two optical c...
Atom optical analoga exist for many light-optical elements likemirrors, lenses and beam splitters. ...
The low-energy spectrum of a particle in planar honeycomb lattices is conical, which leads to the un...