We show that many features of the recent experiments of Schneble et al (2003 Science 300 475), which demonstrate two different regimes of light scattering by a Bose–Einstein condensate, can be described using a one-dimensional mean-field quantum CARL model, where optical amplification occurs simultaneously with the production of a periodic density modulation in the atomic medium. The two regimes of light scattering observed in these experiments, originally described as 'Kapiza–Dirac scattering' and 'super-radiant Rayleigh scattering', can be interpreted as the semiclassical and quantum limits respectively of CARL lasing
We theoretically study the superradiant gain and the direction of this coherent radiant for an array...
The superradiant Rayleigh scattering using a pump laser incident along the short axis of a Bose-Eins...
The interaction of short and strong laser pulses with an atomic Bose-Einstein condensate is found to...
We show that many features of the recent experiments of Schneble et al (2003 Science 300 475), which...
A theory of coherent light scattering from an elongated Bose-Einstein condensate exposed to an off-r...
Due to its coherence properties and high optical depth, a Bose–Einstein condensate [BEC] provides an...
We present the results of an experiment on light scattering from an elongated Bose-Einstein condensa...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
Due to its coherence properties and high optical depth, a Bose-Einstein condensate [BEC] provides an...
A collective atomic recoil laser (CARL) realized with a Bose-Einstein condensate offers the possibil...
A semi-classical theory of coherent light scattering from an elongated sample of cold atoms exposed ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2001.Includes bibliographi...
We investigate the interaction of a moving BEC with a far detuned laser beam. Superradiant Rayleigh ...
The asymmetric patterns of superradiance from Bose-Einstein condensates are studied for the spatiall...
Different regimes of collective light scattering are observed when an elongated Bose-Einstein conden...
We theoretically study the superradiant gain and the direction of this coherent radiant for an array...
The superradiant Rayleigh scattering using a pump laser incident along the short axis of a Bose-Eins...
The interaction of short and strong laser pulses with an atomic Bose-Einstein condensate is found to...
We show that many features of the recent experiments of Schneble et al (2003 Science 300 475), which...
A theory of coherent light scattering from an elongated Bose-Einstein condensate exposed to an off-r...
Due to its coherence properties and high optical depth, a Bose–Einstein condensate [BEC] provides an...
We present the results of an experiment on light scattering from an elongated Bose-Einstein condensa...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
Due to its coherence properties and high optical depth, a Bose-Einstein condensate [BEC] provides an...
A collective atomic recoil laser (CARL) realized with a Bose-Einstein condensate offers the possibil...
A semi-classical theory of coherent light scattering from an elongated sample of cold atoms exposed ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2001.Includes bibliographi...
We investigate the interaction of a moving BEC with a far detuned laser beam. Superradiant Rayleigh ...
The asymmetric patterns of superradiance from Bose-Einstein condensates are studied for the spatiall...
Different regimes of collective light scattering are observed when an elongated Bose-Einstein conden...
We theoretically study the superradiant gain and the direction of this coherent radiant for an array...
The superradiant Rayleigh scattering using a pump laser incident along the short axis of a Bose-Eins...
The interaction of short and strong laser pulses with an atomic Bose-Einstein condensate is found to...