A non-invasive, compact laserwire system has been developed to measure the transverse emittance of an H- beam and has been demonstrated at the new LINAC4 injector for the LHC at CERN. Light from a low power, pulsed laser source is conveyed via fibre to collide with the H- beam, a fraction of which is neutralized and then intercepted by a downstream diamond detector. Scanning the focused laser across the H- beam and measuring the distribution of the photo-neutralized particles enables the transverse emittance to be reconstructed. The vertical phase-space distribution of a 3 MeV beam during LINAC4 commissioning has been measured by the laserwire and verified with a conventional slit and grid method.A non-invasive, compact laserwire system has...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
LINAC4 is part of the CERN LHC injector chain upgrade and will accelerate H- ions from 45 keV to 160...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A noninvasive, compact laserwire system has been developed to measure the transverse emittance of an...
Within the framework of the LHC Injector Upgrade (LIU), the new LINAC4 is currently being commission...
A non-invasive laserwire system is being developed for quasi-continuous monitoring of the transverse...
Laserwires were originally developed to measure micron-sized electron beams via Compton scattering, ...
The new LINAC4 at CERN will accelerate H- particles to 160 MeV and allow high brightness proton beam...
An instrument to non-destructively measure the transverse profile of an H$^{-}$ beam has been develo...
A laser-based emittance monitor has been developed to non-invasively measure the transverse emittanc...
LINAC4 has started its staged commissioning at CERN. After completion it will accelerate high bright...
High energy particle accelerators are designed to collide charged particle beams and thus s...
The CERN LINAC4 beam commissioning at 3 and 12 MeV was completed in 2014. A novel system for measuri...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
LINAC4 is part of the CERN LHC injector chain upgrade and will accelerate H- ions from 45 keV to 160...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A noninvasive, compact laserwire system has been developed to measure the transverse emittance of an...
Within the framework of the LHC Injector Upgrade (LIU), the new LINAC4 is currently being commission...
A non-invasive laserwire system is being developed for quasi-continuous monitoring of the transverse...
Laserwires were originally developed to measure micron-sized electron beams via Compton scattering, ...
The new LINAC4 at CERN will accelerate H- particles to 160 MeV and allow high brightness proton beam...
An instrument to non-destructively measure the transverse profile of an H$^{-}$ beam has been develo...
A laser-based emittance monitor has been developed to non-invasively measure the transverse emittanc...
LINAC4 has started its staged commissioning at CERN. After completion it will accelerate high bright...
High energy particle accelerators are designed to collide charged particle beams and thus s...
The CERN LINAC4 beam commissioning at 3 and 12 MeV was completed in 2014. A novel system for measuri...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...
LINAC4 is part of the CERN LHC injector chain upgrade and will accelerate H- ions from 45 keV to 160...
A laserwire is a non-invasive, high resolution particle beam size monitor based on Compton scatterin...