We solve the long-time dynamics of a high-gain free-electron laser in the quantum regime. In this regime each electron emits at most one photon on average, independently of the initial field. In contrast, the variance of the photon statistics shows a qualitatively different behavior for different initial states of the field. We find that the realization of a seeded quantum free-electron laser is more feasible than self-amplified spontaneous emission
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
We propose a new approach, based on statistical mechanics, to predict the saturated state of a singl...
We solve the long-time dynamics of a high-gain free-electron laser in the quantum regime. In this re...
We derive an effective Dicke model in momentum space to describe collective effects in the quantum r...
We investigate the quantum regime of a high-gain free-electron laser starting from noise. In the fir...
A Free-Electron Laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
We study the behavior of a free electron laser in the high gain regime, and the conditions for the e...
A Free Electron Laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
The quantum regime of the free-electron laser (FEL) interaction, where the recoil associated with ph...
The density matrix in the Lindblad form is used to describe the behavior of the Free-Electron Laser ...
We include inhomogeneous effects in the quantum model of a free electron laser taking into account t...
We present an analysis of quantum free electron laser (QFEL) dynamics including the effects of spont...
A theoretical analysis of high-gain Compton free electron laser dynamics when the radio frequency (r...
We extend previous analyses of spontaneous emission in a quantum free electron laser (QFEL) and comp...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
We propose a new approach, based on statistical mechanics, to predict the saturated state of a singl...
We solve the long-time dynamics of a high-gain free-electron laser in the quantum regime. In this re...
We derive an effective Dicke model in momentum space to describe collective effects in the quantum r...
We investigate the quantum regime of a high-gain free-electron laser starting from noise. In the fir...
A Free-Electron Laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
We study the behavior of a free electron laser in the high gain regime, and the conditions for the e...
A Free Electron Laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
The quantum regime of the free-electron laser (FEL) interaction, where the recoil associated with ph...
The density matrix in the Lindblad form is used to describe the behavior of the Free-Electron Laser ...
We include inhomogeneous effects in the quantum model of a free electron laser taking into account t...
We present an analysis of quantum free electron laser (QFEL) dynamics including the effects of spont...
A theoretical analysis of high-gain Compton free electron laser dynamics when the radio frequency (r...
We extend previous analyses of spontaneous emission in a quantum free electron laser (QFEL) and comp...
The authors investigate finite pulse effects in self-amplified spontaneous emission (SASE), especial...
The free-electron laser (FEL) is a device for converting kinetic energy in a relativistic electron b...
We propose a new approach, based on statistical mechanics, to predict the saturated state of a singl...