We present a quantum-mechanical treatment of the influence of collisional dephasing processes on the statistical properties of superfluorescence (SF). The theory, which treats nonlinear propagation effects as well as quantum noise, shows how the nature of the cooperative emission process changes from that of SF to that of amplified spontaneous emission as the collisional dephasing rate is varied. The predictions of how the SF delay time varies with the collisional dephasing rate are in good agreement with the results of a recent experiment [M. S. Malcuit, J. J. Maki, D. J. Simkin, and R. W. Boyd, Phys. Rev. Lett. 59, 1189 (1987)]
We present a comparative study of time-integrated four-wave-mixing and femtosecond emission under re...
This thesis addresses the problem of a form of anomalous decoherence that sheds light into the spect...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the superradiant evolution of a set of N two-level systems spontaneously radiating under th...
We have studied superfluorescence (SF) in Ca vapor evolving on the 3d4s3DJ-4s4p3PJ−1 transitions at ...
Spontaneous decay is a phenomenon that has been described for the first time by Dirac, Wigner and W...
Irradiation of a medium by short intense pulses from x-ray (XUV) free-electron lasers can result in ...
We have studied superfluorescence (SF) under highly unfavorable conditions of rapid collisional and ...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
International audienceWe investigate the influence of nonstationary 1/fμ noise, produced by interact...
We analyze a 1-d ring structure composed of many two-levels systems, in the limit where only one exc...
The quantum kicked rotor is studied experimentally in an atom-optics setting, where we observe the c...
1noIn this work, we investigate how the high-harmonic generation (HHG) spectrum is affected by elec...
Abstract. A non-linear rate equation describing superfluorescence in many-level systems is presented...
We present a comparative study of time-integrated four-wave-mixing and femtosecond emission under re...
This thesis addresses the problem of a form of anomalous decoherence that sheds light into the spect...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We study the superradiant evolution of a set of N two-level systems spontaneously radiating under th...
We have studied superfluorescence (SF) in Ca vapor evolving on the 3d4s3DJ-4s4p3PJ−1 transitions at ...
Spontaneous decay is a phenomenon that has been described for the first time by Dirac, Wigner and W...
Irradiation of a medium by short intense pulses from x-ray (XUV) free-electron lasers can result in ...
We have studied superfluorescence (SF) under highly unfavorable conditions of rapid collisional and ...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...
We investigate the influence of nonstationary 1/f^mu noise, produced by interacting defects, on a qu...
International audienceWe investigate the influence of nonstationary 1/fμ noise, produced by interact...
We analyze a 1-d ring structure composed of many two-levels systems, in the limit where only one exc...
The quantum kicked rotor is studied experimentally in an atom-optics setting, where we observe the c...
1noIn this work, we investigate how the high-harmonic generation (HHG) spectrum is affected by elec...
Abstract. A non-linear rate equation describing superfluorescence in many-level systems is presented...
We present a comparative study of time-integrated four-wave-mixing and femtosecond emission under re...
This thesis addresses the problem of a form of anomalous decoherence that sheds light into the spect...
We study the dynamics of dephasing in a quantum two-level system by modeling both 1/f and high-frequ...