Atomic clouds prepared in \u201ctimed Dicke\u201d states, i.e. states where the phase of the oscillating atomic dipole moments linearly varies along one direction of space, are efficient sources of superradiant light emission [Scully et al., Phys. Rev. Lett. 96, 010501(2006)]. Here, we show that, in contrast to previous assertions, timed Dicke states are not the states automatically generated by incident laser light. In reality, the atoms act back on the driving field because of the finite refraction of the cloud. This leads to nonuniform phase shifts, which, at higher optical densities, dramatically alter the cooperative scattering properties, as we show by explicit calculation of macroscopic observables, such as the radiation pressure for...
4 pages, 4 figuresInternational audienceCooperative scattering of light by an extended object such a...
The interplay between the superradiant emission of a cloud of cold two-level atoms and the radiation...
5 pages, 2 FiguresCooperative spontaneous emission of a single photon from a cloud of $N$ atoms modi...
Atomic clouds prepared in ""timed Dicke"" states, i.e. states where the phase of the oscillating ato...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
Cooperative spontaneous emission of a single photon from a cloud of N atoms modifies substantially t...
We discuss the role of diffuse, Mie, and cooperative scattering on the radiation pressure force acti...
In this paper, we study cooperative scattering of low intensity light by a cloud of N two-level syst...
<div><p>The interplay between the superradiant emission of a cloud of cold two-level atoms and the r...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
Cooperative scattering in cold atoms has gained renewed interest, in particular in the context of si...
4 pages, 4 figuresInternational audienceCooperative scattering of light by an extended object such a...
The interplay between the superradiant emission of a cloud of cold two-level atoms and the radiation...
5 pages, 2 FiguresCooperative spontaneous emission of a single photon from a cloud of $N$ atoms modi...
Atomic clouds prepared in ""timed Dicke"" states, i.e. states where the phase of the oscillating ato...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
Cooperative spontaneous emission of a single photon from a cloud of N atoms modifies substantially t...
We discuss the role of diffuse, Mie, and cooperative scattering on the radiation pressure force acti...
In this paper, we study cooperative scattering of low intensity light by a cloud of N two-level syst...
<div><p>The interplay between the superradiant emission of a cloud of cold two-level atoms and the r...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
Cooperative scattering in cold atoms has gained renewed interest, in particular in the context of si...
4 pages, 4 figuresInternational audienceCooperative scattering of light by an extended object such a...
The interplay between the superradiant emission of a cloud of cold two-level atoms and the radiation...
5 pages, 2 FiguresCooperative spontaneous emission of a single photon from a cloud of $N$ atoms modi...