We study a method of laser-Compton cooling of electron beams for future linear colliders. Using a Monte Carlo code, we evaluate the effects of the laser-electron interaction for transverse cooling. The optics with and without chromatic correction for the cooling are examined. The laser-Compton cooling for Japan Linear Collider/Next Linear Collider at E_{0}=2 GeV is considered
Cooling intense high-energy hadron beams remains a major challenge in modern accelerator physics. Sy...
After a discussion of Liouville's theorem, and its implications for beam cooling, a brief descriptio...
A m+-m- collider must compress the beam phase-space volume by a factor of ~106 to obtain high lumino...
The method of the Laser-Compton cooling of the electron beams is studied. Using a Monte Carlo code, ...
A novel method of electron beam cooling is considered which can be used for linear colliders. The el...
We study a method of laser-Compton cooling of electron beams. Using a MonteCarlo code, we evaluate t...
The laser radiative cooling of electron beams via Thomson scattering is discussed, analysed, and sim...
Self–consistent dynamics of a bunch circulating in the Compton storage ring has been studied analyti...
Fast cooling of bunches circulating in a Compton ring is achieved by placing the collision point bet...
The ALICE experiment to be installed at the Large Hadron Collider (LHC) will initially look at Pb82+...
We propose an enhancement of laser radiative cooling by utilizing laser pulses of small spatial and ...
Diverse methods which are available for particle beam cooling are reviewed. They consist of some hig...
The possibility of using a laser beam as a diagnostic tool in an electron-cooling experiment is disc...
A compact laser-electron storage ring (LESR) is proposed for electron beam cooling or x-ray generati...
The development in recent years of methods for reducing the phase volume of colliding particle beams...
Cooling intense high-energy hadron beams remains a major challenge in modern accelerator physics. Sy...
After a discussion of Liouville's theorem, and its implications for beam cooling, a brief descriptio...
A m+-m- collider must compress the beam phase-space volume by a factor of ~106 to obtain high lumino...
The method of the Laser-Compton cooling of the electron beams is studied. Using a Monte Carlo code, ...
A novel method of electron beam cooling is considered which can be used for linear colliders. The el...
We study a method of laser-Compton cooling of electron beams. Using a MonteCarlo code, we evaluate t...
The laser radiative cooling of electron beams via Thomson scattering is discussed, analysed, and sim...
Self–consistent dynamics of a bunch circulating in the Compton storage ring has been studied analyti...
Fast cooling of bunches circulating in a Compton ring is achieved by placing the collision point bet...
The ALICE experiment to be installed at the Large Hadron Collider (LHC) will initially look at Pb82+...
We propose an enhancement of laser radiative cooling by utilizing laser pulses of small spatial and ...
Diverse methods which are available for particle beam cooling are reviewed. They consist of some hig...
The possibility of using a laser beam as a diagnostic tool in an electron-cooling experiment is disc...
A compact laser-electron storage ring (LESR) is proposed for electron beam cooling or x-ray generati...
The development in recent years of methods for reducing the phase volume of colliding particle beams...
Cooling intense high-energy hadron beams remains a major challenge in modern accelerator physics. Sy...
After a discussion of Liouville's theorem, and its implications for beam cooling, a brief descriptio...
A m+-m- collider must compress the beam phase-space volume by a factor of ~106 to obtain high lumino...