We investigate the effect of a phase-modulated pump beam on collective backscattering also termed collective atomic recoil lasing CARL by a cold, collisionless atomic gas. We show using a numerical analysis that different regimes can be identified in which the atomic dynamics evolves in a qualitatively different manner during the light-atom interaction, depending on the magnitude of the pump modulation frequency. Our results also demonstrate that phase-modulating the pump field can substantially enhance the backscattered fiel
The collective dynamics of mobile scatterers and light in optical resonators generates complex behav...
We consider here a model previously introduced to describe the collective behavior of an ensemble of...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...
We investigate the effect of a phase-modulated pump beam on collective backscattering also termed co...
We investigate the effect of pump phase noise on the collective backscattering of light by a cold, c...
We extend the collective atomic recoil lasing (CARL) model including the effects of friction and dif...
We extend the Collective Atomic Recoil Lasing (CARL) model including the effects of friction and dif...
We demonstrate that superradiance and collective atomic recoil lasing from cold atoms can be enhance...
10 pagesThe interaction of an atomic gas confined inside a cavity containing a strong electromagneti...
Networks of globally coupled oscillators exhibit phase transitions from incoherent to coherent state...
This theoretical doctoral thesis investigates the collective effects that emerge in cold atomic syst...
We present a theoretical study of the interaction between light and a cold gasof three-level, ladder...
We investigate transverse effects in collective atomic recoil lasing (CARL), where a cold atomic sam...
We analyze the collective light scattering by cold atoms in free space of a pump-laser beam possessi...
Cold atomic clouds in collective atomic recoil lasing are usually confined by an optical cavity, whi...
The collective dynamics of mobile scatterers and light in optical resonators generates complex behav...
We consider here a model previously introduced to describe the collective behavior of an ensemble of...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...
We investigate the effect of a phase-modulated pump beam on collective backscattering also termed co...
We investigate the effect of pump phase noise on the collective backscattering of light by a cold, c...
We extend the collective atomic recoil lasing (CARL) model including the effects of friction and dif...
We extend the Collective Atomic Recoil Lasing (CARL) model including the effects of friction and dif...
We demonstrate that superradiance and collective atomic recoil lasing from cold atoms can be enhance...
10 pagesThe interaction of an atomic gas confined inside a cavity containing a strong electromagneti...
Networks of globally coupled oscillators exhibit phase transitions from incoherent to coherent state...
This theoretical doctoral thesis investigates the collective effects that emerge in cold atomic syst...
We present a theoretical study of the interaction between light and a cold gasof three-level, ladder...
We investigate transverse effects in collective atomic recoil lasing (CARL), where a cold atomic sam...
We analyze the collective light scattering by cold atoms in free space of a pump-laser beam possessi...
Cold atomic clouds in collective atomic recoil lasing are usually confined by an optical cavity, whi...
The collective dynamics of mobile scatterers and light in optical resonators generates complex behav...
We consider here a model previously introduced to describe the collective behavior of an ensemble of...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...