We derive a 1D quantum model for the free electron laser in terms of a Wigner function for the electron beam. We consider both the case of an unbounded space coordinate, for which the momentum is continuous, and the case of a periodic space coordinate, for which the momentum is discrete. The Wigner model extends the Schrodinger model, previously considered, since it also describes the evolution of a mixed state. Furthermore, the Wigner model shows explicitly the classical limit when the quantum FEL parameter rho is large. This model is also the starting point for a future extension to a 3D description of the electron dynamics. The results obtained here are also valid for the quantum description of the collective atomic recoil laser
In a quantum mechanical description of the free-electron laser (FEL), the electrons jump on discrete...
We study the spontaneous emission in high-gain free-electron lasers operating in the quantum regime ...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
We derive a 1D quantum model for the free electron laser in terms of a Wigner function for the elect...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
A three dimensional, time dependent, quantum model for an FEL with a laser wiggler, based on a discr...
A compact tunable source of soft X-rays could be realized combining a state-of-the-art electron sour...
Free Electron Laser (FEL) and Collective Atomic Recoil Laser (CARL) are described by the same model ...
A compact tunable source of soft X-rays could be realized combining a state-of-the-art electron sour...
Operation of a Quantum Free Electron Laser (QFEL) could provide a compact and fully coherent source ...
All present realizations of a free-electron laser (FEL) can be solely described by classical physics...
The density matrix in the Lindblad form is used to describe the behavior of the Free-Electron Laser ...
A quantum model of a free-electron laser (FEL) is considered. Two different approaches for the explo...
We study the spontaneous emission in high-gain free-electron lasers operating in the quantum regime ...
In a quantum mechanical description of the free-electron laser (FEL), the electrons jump on discrete...
We study the spontaneous emission in high-gain free-electron lasers operating in the quantum regime ...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
We derive a 1D quantum model for the free electron laser in terms of a Wigner function for the elect...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...
A three dimensional, time dependent, quantum model for an FEL with a laser wiggler, based on a discr...
A compact tunable source of soft X-rays could be realized combining a state-of-the-art electron sour...
Free Electron Laser (FEL) and Collective Atomic Recoil Laser (CARL) are described by the same model ...
A compact tunable source of soft X-rays could be realized combining a state-of-the-art electron sour...
Operation of a Quantum Free Electron Laser (QFEL) could provide a compact and fully coherent source ...
All present realizations of a free-electron laser (FEL) can be solely described by classical physics...
The density matrix in the Lindblad form is used to describe the behavior of the Free-Electron Laser ...
A quantum model of a free-electron laser (FEL) is considered. Two different approaches for the explo...
We study the spontaneous emission in high-gain free-electron lasers operating in the quantum regime ...
In a quantum mechanical description of the free-electron laser (FEL), the electrons jump on discrete...
We study the spontaneous emission in high-gain free-electron lasers operating in the quantum regime ...
A free-electron laser (FEL) operating in the quantum regime can provide a compact and monochromatic ...