4 pages - submitted to Physical Review LettersInternational audienceBy using the coherent backscattering interference effect, we investigate experimentally and theoretically how coherent transport of light inside a cold atomic vapour is affected by the residual motion of atomic scatterers. As the temperature of the atomic cloud increases, the interference contrast dramatically decreases emphazising the role of motion-induced decoherence for resonant scatterers even in the sub-Doppler regime of temperature. We derive analytical expressions for the corresponding coherence time
We study light coherent transport in the weak localization regime using magneto-optically cooled str...
We study coherent backscattering (CBS) of resonant light by cold atomic vapors, both experimentally ...
Starting from a microscopic theory for atomic scatterers, we describe the scattering of light by a s...
By using the coherent backscattering interference effect, we investigate experimentally and theoreti...
We study the effect of an external magnetic field on coherent backscattering of light from a cool ru...
The recent observation of coherent backscattering (CBS) of light by atomshas emphasized the key role...
14 pages. http://arxiv.org/abs/quant-ph/0304048The interference contrast observed in coherent backsc...
Submitted to Phys. Rev. Lett,When a resonant laser sent on an optically thick cold atomic cloud is a...
We study light coherent transport in the weak localization regime using magneto-optically cooled str...
Development of a theoretical treatment of multiple coherent light scattering in an ultracold atomic ...
With ready access to massive computer clusters we may now study light propagation in a dense cold at...
We study theoretically inelastic spectrum of coherent backscattering of laser light by two atoms. Fo...
We study the coherent transmission of light through cold strontium atomic clouds, using the narrow i...
We experimentally study radiation trapping of near-resonant light in a cloud of laser-cooled rubidiu...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
We study light coherent transport in the weak localization regime using magneto-optically cooled str...
We study coherent backscattering (CBS) of resonant light by cold atomic vapors, both experimentally ...
Starting from a microscopic theory for atomic scatterers, we describe the scattering of light by a s...
By using the coherent backscattering interference effect, we investigate experimentally and theoreti...
We study the effect of an external magnetic field on coherent backscattering of light from a cool ru...
The recent observation of coherent backscattering (CBS) of light by atomshas emphasized the key role...
14 pages. http://arxiv.org/abs/quant-ph/0304048The interference contrast observed in coherent backsc...
Submitted to Phys. Rev. Lett,When a resonant laser sent on an optically thick cold atomic cloud is a...
We study light coherent transport in the weak localization regime using magneto-optically cooled str...
Development of a theoretical treatment of multiple coherent light scattering in an ultracold atomic ...
With ready access to massive computer clusters we may now study light propagation in a dense cold at...
We study theoretically inelastic spectrum of coherent backscattering of laser light by two atoms. Fo...
We study the coherent transmission of light through cold strontium atomic clouds, using the narrow i...
We experimentally study radiation trapping of near-resonant light in a cloud of laser-cooled rubidiu...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
We study light coherent transport in the weak localization regime using magneto-optically cooled str...
We study coherent backscattering (CBS) of resonant light by cold atomic vapors, both experimentally ...
Starting from a microscopic theory for atomic scatterers, we describe the scattering of light by a s...