The collective atomic recoil lasing (CARL) model which includes the effects of friction and diffusion forces acting on the atoms due to the presence of optical molasses fields was described. The system was described using a set of coupled Maxwell-Fokker-Planck equations. A linear stability analysis revealed that there was a threshold condition for the pump power above which collective backscattering occurs. It was shown that the backscattered field and atomic density modulation amplitude or bunching evolves to a steady state, in contrast to the nonstationary behavior observed using the usual CARL model
We present a theoretical study of the interaction between light and a cold gasof three-level, ladder...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...
Im Rahmen der vorliegenden Arbeit wird zum ersten Mal ein Collective Atomic Recoil Laser (CARL) zwei...
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...
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 investigate transverse effects in collective atomic recoil lasing (CARL), where a cold atomic sam...
We demonstrate that superradiance and collective atomic recoil lasing from cold atoms can be enhance...
We investigate the effect of a phase-modulated pump beam on collective backscattering also termed co...
We present a theoretical study of the interaction between light and a cold gas of three-level, ladde...
Collective atomic recoil lasing (CARL) is a process during which an ensemble of cold atoms, driven b...
Abstract The free electron laser and collective atomic recoil laser (CARL) are examples of collect...
We analyze the collective light scattering by cold atoms in free space of a pump-laser beam possessi...
Collective atomic recoil lasing (CARL) is a process during which an ensemble of cold atoms, driven b...
We present a theoretical study of the interaction between light and a cold gasof three-level, ladder...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...
Im Rahmen der vorliegenden Arbeit wird zum ersten Mal ein Collective Atomic Recoil Laser (CARL) zwei...
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...
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 investigate transverse effects in collective atomic recoil lasing (CARL), where a cold atomic sam...
We demonstrate that superradiance and collective atomic recoil lasing from cold atoms can be enhance...
We investigate the effect of a phase-modulated pump beam on collective backscattering also termed co...
We present a theoretical study of the interaction between light and a cold gas of three-level, ladde...
Collective atomic recoil lasing (CARL) is a process during which an ensemble of cold atoms, driven b...
Abstract The free electron laser and collective atomic recoil laser (CARL) are examples of collect...
We analyze the collective light scattering by cold atoms in free space of a pump-laser beam possessi...
Collective atomic recoil lasing (CARL) is a process during which an ensemble of cold atoms, driven b...
We present a theoretical study of the interaction between light and a cold gasof three-level, ladder...
We have studied collective recoil lasing by a cold atomic gas, scattering photons from an incident l...
Im Rahmen der vorliegenden Arbeit wird zum ersten Mal ein Collective Atomic Recoil Laser (CARL) zwei...