We observe a density-dependent collective suppression of optical pumping between the hyperfine ground states in an array of submicrometer-sized clouds of dense and cold rubidium atoms. The suppressed Raman transition rate can be explained by strong resonant dipole-dipole interactions that are enhanced by increasing atom density, and are already significant at densities of ﰀ0.1k3, where k denotes the resonance wave number. The observations are consistent with stochastic electrodynamics simulations that incorporate the effects of population transfer via internal atomic levels embedded in a coupled-dipole model
The optical properties of randomly positioned, resonant scatterers is a fundamentally difficult prob...
http://arxiv.org/abs/1706.09698International audienceThe optical properties of randomly positioned, ...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We show how strong light-mediated resonant dipole-dipole interactions between atoms can be utilized ...
<p>Collective behavior in many-body systems, where the dynamics of an individual element depend on t...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the emergence of collective scattering in the presence of dipole-dipole interactions when w...
When several atoms are placed close to each other, the resonant dipole-dipole interactionbetween ato...
When several atoms are placed close to each other, the resonant dipole-dipole interactionbetween ato...
5 pages, 5 figuresInternational audienceWe study the emergence of collective scattering in the prese...
The optical properties of randomly positioned, resonant scatterers is a fundamentally difficult prob...
http://arxiv.org/abs/1706.09698International audienceThe optical properties of randomly positioned, ...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...
We observe a density-dependent collective suppression of optical pumping between the hyperfine groun...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We show how strong light-mediated resonant dipole-dipole interactions between atoms can be utilized ...
<p>Collective behavior in many-body systems, where the dynamics of an individual element depend on t...
We study the emergence of a collective optical response of a cold and dense Rb87 atomic cloud to a n...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We derive equations for the strongly coupled system of light and dense atomic ensembles. The formali...
We study the collective optical response of an atomic ensemble confined within a single-mode optical...
We study the emergence of collective scattering in the presence of dipole-dipole interactions when w...
When several atoms are placed close to each other, the resonant dipole-dipole interactionbetween ato...
When several atoms are placed close to each other, the resonant dipole-dipole interactionbetween ato...
5 pages, 5 figuresInternational audienceWe study the emergence of collective scattering in the prese...
The optical properties of randomly positioned, resonant scatterers is a fundamentally difficult prob...
http://arxiv.org/abs/1706.09698International audienceThe optical properties of randomly positioned, ...
Utilizing controllable collective light-atom interactions, I explore the properties of large ensembl...