We calculate the relative permittivity of a cold atomic gas under weak probe illumination, up to second order in the density. Within the framework of a diagrammatic representation method, we identify all the second-order diagrams that enter into the description of the relative permittivity for coherent light transmission. These diagrams originate from pairwise position correlation and recurrent scattering. Using coupled dipole equations, we numerically simulate the coherent transmission with scalar and vector waves and find good agreement with the perturbative calculations. We applied this perturbative expansion approach to a classical gas at rest, but the method is extendable to thermal gas with finite atomic motion and to quantum gases wh...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
This research work aims to analyze light propagation in resonant cold atomic gas enviroment. When we...
International audienceWe calculate the relative permittivity of a cold atomic gas under weak probe i...
We study the coherent transmission of light through cold strontium atomic clouds, using the narrow i...
With ready access to massive computer clusters we may now study light propagation in a dense cold at...
International audienceWe measure the coherent scattering of low-intensity, near-resonant light by a ...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
We study light propagation through a slab of cold gas using both the standard electrodynamics of pol...
By using the coherent backscattering interference effect, we investigate experimentally and theoreti...
Starting from a microscopic theory for atomic scatterers, we describe the scattering of light by a s...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study coherent backscattering (CBS) of resonant light by cold atomic vapors, both experimentally ...
The optical properties of randomly positioned, resonant scatterers is a fundamentally difficult prob...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
This research work aims to analyze light propagation in resonant cold atomic gas enviroment. When we...
International audienceWe calculate the relative permittivity of a cold atomic gas under weak probe i...
We study the coherent transmission of light through cold strontium atomic clouds, using the narrow i...
With ready access to massive computer clusters we may now study light propagation in a dense cold at...
International audienceWe measure the coherent scattering of low-intensity, near-resonant light by a ...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
We study light propagation through a slab of cold gas using both the standard electrodynamics of pol...
By using the coherent backscattering interference effect, we investigate experimentally and theoreti...
Starting from a microscopic theory for atomic scatterers, we describe the scattering of light by a s...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
We study interactions of light with a sample of two-level atoms. Quantum statistical effects of dege...
We study coherent backscattering (CBS) of resonant light by cold atomic vapors, both experimentally ...
The optical properties of randomly positioned, resonant scatterers is a fundamentally difficult prob...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
This research work aims to analyze light propagation in resonant cold atomic gas enviroment. When we...