We propose a scheme to create an effective magnetic field for ultracold atoms in a planar geometry. The setup allows the experimental study of classical and quantum Hall effects in close analogy to solid-state systems including the possibility of finite currents. The present scheme is an extention of the proposal in Phys. Rev. Lett. 93, 033602 (2004), where the effective magnetic field is now induced for three-level Lambda-type atoms by two counterpropagating laser beams with shifted spatial profiles. Under conditions of electromagnetically induced transparency the atom-light interaction has a space-dependent dark state, and the adiabatic center-of-mass motion of atoms in this state experiences effective vector and scalar potentials. The as...
We present an all-optical method to measure and compensate for residual magnetic fields present in a...
In the seminar, we describe a technique to engineer a light-induced vector potential in the cold ato...
Cold atom setups are now commonly employed in simulations of condensed matter phenomena. We present ...
We propose a scheme to create an effective magnetic field for ultracold atoms in a planar geometry. ...
We propose a scheme to create an effective magnetic field for ultra-cold atoms in a planar geometry....
We investigate the influence of two resonant laser beams on the mechanical properties of degenerate ...
We study the influence of two resonant laser beams (to be referred to as the control and probe beams...
We study the influence of two resonant laser beams (to be referred to as the control and probe beams...
The loading and guiding of a launched cloud of cold atoms with the optical dipole force are theoreti...
Complex vectorial light fields offer unprecedented information capacity and flexibility to design li...
We show that the adiabatic motion of ultracold, multilevel atoms in spatially varying laser fields c...
We calculate the low-energy elementary excitations of a Bose-Einstein condensate in an effective mag...
Abstract. Gauge fields are central in our modern understanding of physics at all scales. At the high...
Cold neutral atoms provide a versatile and controllable platform for emulating various quantum syste...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
We present an all-optical method to measure and compensate for residual magnetic fields present in a...
In the seminar, we describe a technique to engineer a light-induced vector potential in the cold ato...
Cold atom setups are now commonly employed in simulations of condensed matter phenomena. We present ...
We propose a scheme to create an effective magnetic field for ultracold atoms in a planar geometry. ...
We propose a scheme to create an effective magnetic field for ultra-cold atoms in a planar geometry....
We investigate the influence of two resonant laser beams on the mechanical properties of degenerate ...
We study the influence of two resonant laser beams (to be referred to as the control and probe beams...
We study the influence of two resonant laser beams (to be referred to as the control and probe beams...
The loading and guiding of a launched cloud of cold atoms with the optical dipole force are theoreti...
Complex vectorial light fields offer unprecedented information capacity and flexibility to design li...
We show that the adiabatic motion of ultracold, multilevel atoms in spatially varying laser fields c...
We calculate the low-energy elementary excitations of a Bose-Einstein condensate in an effective mag...
Abstract. Gauge fields are central in our modern understanding of physics at all scales. At the high...
Cold neutral atoms provide a versatile and controllable platform for emulating various quantum syste...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
We present an all-optical method to measure and compensate for residual magnetic fields present in a...
In the seminar, we describe a technique to engineer a light-induced vector potential in the cold ato...
Cold atom setups are now commonly employed in simulations of condensed matter phenomena. We present ...