The propagation of a band-limited light pulse through an atomic medium under a Λ excitation scheme is theoretically analyzed in this paper. We consider in particular the case where the light pulse is detected through the coherent microwave emission of the atomic ensemble (coherent population trapping maser). Significant differences are predicted with respect to the more usual optical detection (electromagnetically induced transparency signal) and found in agreement with the experimental results. Higher signal delays were observed in the microwave emission than in the optical signal with an equivalent group velocity of 6 m/s as well as highly superluminal propagation under a proper modulation scheme. The experiments were performed with ...
This paper reviews earlier studies on superluminal wave propagation in anomalously dispersive media ...
Energy exchange between an electromagnetic pulse and dispersive media may result in complicated, yet...
We theoretically investigate the effect of atomic recoil on the propagation of ultraslow light pulse...
The propagation of a band-limited light pulse through an atomic medium under a Λ excitation sch...
The coherent microwave emission from an optically thick atomic ensemble in a cavity under coherent p...
We consider the propagation in a dielectric medium of radiation emitted by a single-atom source. The...
Atomic media have played a major role in studies of fast light. One of their attractive features is ...
We report an experimental demonstration of slow and superluminal propagation of pseudo-thermal (chao...
International audienceA cyclic atomic level scheme interacting with an optical and a microwave field...
This paper reports the observation of ultra-superluminal pulse propagation in multiple-contact semic...
This paper deals with the apparent superluminal propagation of electromagnetic pulses in a linear di...
We examine the role of nearby hyper-fine levels in a three-level transparency driven system in which...
We consider propagation of a pulse carrying optical information in a resonant medium of twolevel at...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
In this thesis we study light-matter coherence phenomena related to the interaction of a coherent la...
This paper reviews earlier studies on superluminal wave propagation in anomalously dispersive media ...
Energy exchange between an electromagnetic pulse and dispersive media may result in complicated, yet...
We theoretically investigate the effect of atomic recoil on the propagation of ultraslow light pulse...
The propagation of a band-limited light pulse through an atomic medium under a Λ excitation sch...
The coherent microwave emission from an optically thick atomic ensemble in a cavity under coherent p...
We consider the propagation in a dielectric medium of radiation emitted by a single-atom source. The...
Atomic media have played a major role in studies of fast light. One of their attractive features is ...
We report an experimental demonstration of slow and superluminal propagation of pseudo-thermal (chao...
International audienceA cyclic atomic level scheme interacting with an optical and a microwave field...
This paper reports the observation of ultra-superluminal pulse propagation in multiple-contact semic...
This paper deals with the apparent superluminal propagation of electromagnetic pulses in a linear di...
We examine the role of nearby hyper-fine levels in a three-level transparency driven system in which...
We consider propagation of a pulse carrying optical information in a resonant medium of twolevel at...
We have studied stationary and quasistationary signal light pulses in cold Λ-type atomic media drive...
In this thesis we study light-matter coherence phenomena related to the interaction of a coherent la...
This paper reviews earlier studies on superluminal wave propagation in anomalously dispersive media ...
Energy exchange between an electromagnetic pulse and dispersive media may result in complicated, yet...
We theoretically investigate the effect of atomic recoil on the propagation of ultraslow light pulse...