Matter-wave superradiance is based on the interplay between ultracold atoms coherently organized in momentum space and a backscattered wave. Here, we show that this mechanism may be triggered by Mie scattering from the atomic cloud.We show how the laser light populates the modes of the cloud and thus imprints a phase gradient on the excited atomic dipoles. The interference with the atoms in the ground state results in a grating that in turn generates coherent emission, contributing to the backward light wave onset. The atomic recoil \u201chalos\u201d created by the Mie-scattered light exhibit a strong anisotropy, in contrast to single-atom scattering
A semi-classical theory of coherent light scattering from an elongated sample of cold atoms exposed ...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
Matter-wave superradiance is based on the interplay between ultracold atoms coherently organized in ...
Matter-wave superradiance is based on the interplay between ultracold atoms coherently organized in ...
The interaction of short and strong laser pulses with an atomic Bose-Einstein condensate is found to...
Atomic clouds prepared in \u201ctimed Dicke\u201d states, i.e. states where the phase of the oscilla...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Superradiance scattering from a Bose-Einstein condensate is studied with a two-frequency pumping bea...
The superradiant Rayleigh scattering using a pump laser incident along the short axis of a Bose-Eins...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
Super- and subradiance are usually described in the framework of Dicke collective states, which is a...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Despite the quantum nature of the process, collective scattering by dense cold samples of two-level ...
A semi-classical theory of coherent light scattering from an elongated sample of cold atoms exposed ...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...
Matter-wave superradiance is based on the interplay between ultracold atoms coherently organized in ...
Matter-wave superradiance is based on the interplay between ultracold atoms coherently organized in ...
The interaction of short and strong laser pulses with an atomic Bose-Einstein condensate is found to...
Atomic clouds prepared in \u201ctimed Dicke\u201d states, i.e. states where the phase of the oscilla...
Over the last century, quantum mechanics has dramatically altered our understanding of light and mat...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Superradiance scattering from a Bose-Einstein condensate is studied with a two-frequency pumping bea...
The superradiant Rayleigh scattering using a pump laser incident along the short axis of a Bose-Eins...
When a cold atomic gas is illuminated by a quasi-resonant laser beam, light-induced dipole-dipole co...
Super- and subradiance are usually described in the framework of Dicke collective states, which is a...
Scattering of light at a distribution of scatterers is an intrinsically cooperative process, which m...
Despite the quantum nature of the process, collective scattering by dense cold samples of two-level ...
A semi-classical theory of coherent light scattering from an elongated sample of cold atoms exposed ...
We measure the coherent scattering of light by a cloud of laser-cooled atoms with a size comparable ...
A cloud of cold N two-level atoms driven by a resonant laser beam shows cooperative effects both in ...