With the emergence in the next few years of a new breed of high power laser facilities, it is becoming increasingly important to understand how interacting with intense laser pulses affects the bulk properties of a relativistic electron beam. A detailed analysis of the radiative cooling of electrons indicates that, classically, equal contributions to the phase space contraction occur in the transverse and longitudinal directions. In the weakly quantum regime, in addition to an overall reduction in beam cooling, this symmetry is broken, leading to significantly less cooling in the longitudinal than the transverse directions. By introducing an efficient new technique for studying the evolution of a particle distribution, we demonstrate the qu...
We review recent progress in laser cooling of fast stored ion beams at the Heidelberg Test Storage R...
It is known that dispersive coupling can be applied to realize three-dimensional cooling in stochast...
The mechanism of electron acceleration by intense laser pulse interacting with an underdense plasma ...
With the emergence in the next few years of a new breed of high power laser facilities, it is becomi...
The next few years will see next-generation high-power laser facilities (such as the Extreme Light I...
In the coming years, a new generation of high-power laser facilities (such as the Extreme Light Infr...
Next-generation high-power laser facilities (such as the Extreme Light Infrastructure) will provide ...
This poster discusses the cooling of relativistic electron beams in intense laser pulses
A method of reducing the energy spread of an electron beam in a free-electron laser is suggested. Th...
The laser radiative cooling of electron beams via Thomson scattering is discussed, analysed, and sim...
Doppler laser cooling is a technique to reduce the longitudinal momentum spread of an ion beam in a ...
A novel method of electron beam cooling is considered which can be used for linear colliders. The el...
International audienceWe investigate the electron heating induced by a relativistic-intensity laser ...
We analyze the energy distribution of a relativistic electron beam after the Compton back-scattering...
We review recent progress in laser cooling of fast stored ion beams at the Heidelberg Test Storage R...
It is known that dispersive coupling can be applied to realize three-dimensional cooling in stochast...
The mechanism of electron acceleration by intense laser pulse interacting with an underdense plasma ...
With the emergence in the next few years of a new breed of high power laser facilities, it is becomi...
The next few years will see next-generation high-power laser facilities (such as the Extreme Light I...
In the coming years, a new generation of high-power laser facilities (such as the Extreme Light Infr...
Next-generation high-power laser facilities (such as the Extreme Light Infrastructure) will provide ...
This poster discusses the cooling of relativistic electron beams in intense laser pulses
A method of reducing the energy spread of an electron beam in a free-electron laser is suggested. Th...
The laser radiative cooling of electron beams via Thomson scattering is discussed, analysed, and sim...
Doppler laser cooling is a technique to reduce the longitudinal momentum spread of an ion beam in a ...
A novel method of electron beam cooling is considered which can be used for linear colliders. The el...
International audienceWe investigate the electron heating induced by a relativistic-intensity laser ...
We analyze the energy distribution of a relativistic electron beam after the Compton back-scattering...
We review recent progress in laser cooling of fast stored ion beams at the Heidelberg Test Storage R...
It is known that dispersive coupling can be applied to realize three-dimensional cooling in stochast...
The mechanism of electron acceleration by intense laser pulse interacting with an underdense plasma ...