A hollow electron lens system is presently under development as part of the collimation upgrade for the high luminosity up-grade of LHC. Moreover, at GSI an electron lens system also is proposed for space charge compensation in the SIS-18 synchrotron to decrease the tune spread and allow for the high intensities at the future FAIR facility. For effective operation, a very precise alignment is necessary between the ion beam and the low energy electron beam. For the e-lens at CERN a beam diagnostics setup based on an intersecting gas sheet and the observation of beam induced fluorescence (BIF) is under development within a collaboration between CERN, Cockcroft Institute and GSI. In this paper we give an account of recent preparatory work with...
We present basic facts about electron lenses used in high-energy accelerators and discuss their poss...
To compensate for the beam-beam effects from the proton-proton interactions at IP6 and IP8 in the Re...
An electron lens for head-on beam-beam compensation planned for RHIC requires precise overlap of the...
A hollow electron lens is presently under study as a possible addition to the collimation system for...
An Electron Lens (E-Lens) system will be installed in RHIC to increase luminosity by counteracting t...
The High-Luminosity Large Hadron Collider (HL-LHC) project aims to increase the machine luminosity b...
A test stand is under construction at CERN to study high perveance electron guns, electron beam dyna...
A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and...
The hollow electron lens (e-lens) is a very powerful and advanced tool for active control of diffusi...
Hollow electron lenses are considered as a possible means to improve the LHC beam collimation system...
Collimation with hollow electron beams is currently one of the most promising concepts for active ha...
Installation of electron lenses for the purpose of head-on beam-beam compensation is foreseen at RHI...
Abstract. Electron lenses are pulsed, magnetically confined electron beams whose current-density pro...
A new supersonic gas-jet curtain based beam profile monitor is under development for minimally invas...
The use of hollow electron beam lens for scraping high energy proton beams has been extensively test...
We present basic facts about electron lenses used in high-energy accelerators and discuss their poss...
To compensate for the beam-beam effects from the proton-proton interactions at IP6 and IP8 in the Re...
An electron lens for head-on beam-beam compensation planned for RHIC requires precise overlap of the...
A hollow electron lens is presently under study as a possible addition to the collimation system for...
An Electron Lens (E-Lens) system will be installed in RHIC to increase luminosity by counteracting t...
The High-Luminosity Large Hadron Collider (HL-LHC) project aims to increase the machine luminosity b...
A test stand is under construction at CERN to study high perveance electron guns, electron beam dyna...
A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and...
The hollow electron lens (e-lens) is a very powerful and advanced tool for active control of diffusi...
Hollow electron lenses are considered as a possible means to improve the LHC beam collimation system...
Collimation with hollow electron beams is currently one of the most promising concepts for active ha...
Installation of electron lenses for the purpose of head-on beam-beam compensation is foreseen at RHI...
Abstract. Electron lenses are pulsed, magnetically confined electron beams whose current-density pro...
A new supersonic gas-jet curtain based beam profile monitor is under development for minimally invas...
The use of hollow electron beam lens for scraping high energy proton beams has been extensively test...
We present basic facts about electron lenses used in high-energy accelerators and discuss their poss...
To compensate for the beam-beam effects from the proton-proton interactions at IP6 and IP8 in the Re...
An electron lens for head-on beam-beam compensation planned for RHIC requires precise overlap of the...