Cold atom setups are now commonly employed in simulations of condensed matter phenomena. We present a novel approach to induce strong magnetic interactions between atoms on a self-organized lattice using diffraction of light. Diffractive propagation of structured light fields leads to an exchange between phase and amplitude modulated planes which can be used to couple atomic degrees of freedom via optical pumping nonlinearities. In the experiment a cold cloud of Rb atoms placed near a retro-reflecting mirror is driven by a detuned pump laser. We demonstrate spontaneous magnetic ordering in the Zeeman sublevels of the atomic ground state: anti-ferromagnetic structures on a square lattice and ferrimagnetic structures on a hexagonal lattice in...
We study the transverse self-structuring of cold atomic clouds with effective atomic interactions me...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
We propose a scheme involving cold atoms trapped in optical lattices to observe different phenomena ...
Self-organization in driven dissipative systems is an active field of research with implications in ...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
We investigate the interplay between two mechanisms for magnetic self-organization in a cloud of col...
Laser driven cold atoms in front of a retro-reflecting mirror exhibit self-organization above pump t...
Self-organized phases in cold atoms as a result of light-mediated interactions can be induced by cou...
Laser driven cold atoms near a plane retro-reflecting mirror exhibit self-organization above a pump ...
This Thesis reports on a realization of self-organized magnetization patterns in a cloud of cold ato...
International audienceWe investigate the interplay between two mechanisms for magnetic self-organiza...
The rapidly developing field of optomechanics aims at the com- bined control of optical and mechanic...
<p>Collective behavior in many-body systems, where the dynamics of an individual element depend on t...
We demonstrate that a two-dimensional (2D) optical lattice loaded with repulsive, contact-interactin...
We study the transverse self-structuring of cold atomic clouds with effective atomic interactions me...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
We propose a scheme involving cold atoms trapped in optical lattices to observe different phenomena ...
Self-organization in driven dissipative systems is an active field of research with implications in ...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
This article discusses self-organization in cold atoms via light-mediated interactions induced by fe...
We investigate the interplay between two mechanisms for magnetic self-organization in a cloud of col...
Laser driven cold atoms in front of a retro-reflecting mirror exhibit self-organization above pump t...
Self-organized phases in cold atoms as a result of light-mediated interactions can be induced by cou...
Laser driven cold atoms near a plane retro-reflecting mirror exhibit self-organization above a pump ...
This Thesis reports on a realization of self-organized magnetization patterns in a cloud of cold ato...
International audienceWe investigate the interplay between two mechanisms for magnetic self-organiza...
The rapidly developing field of optomechanics aims at the com- bined control of optical and mechanic...
<p>Collective behavior in many-body systems, where the dynamics of an individual element depend on t...
We demonstrate that a two-dimensional (2D) optical lattice loaded with repulsive, contact-interactin...
We study the transverse self-structuring of cold atomic clouds with effective atomic interactions me...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
We propose a scheme involving cold atoms trapped in optical lattices to observe different phenomena ...