The application of quadrupole devices with high field gradients and small apertures requires precise control over higher order multipole field components. We resent a new scheme for performance control and tuning, which allows the illumination of most of the quadrupole device aperture because of the reduction of higher order field components. Consequently, the size of the aperture can be minimized to match the beam size achieving field gradients of up to 500 T m-1 at good imaging quality. The characterization method based on a Hall probe measurement and a Fourier analysis was confirmed using the high quality electron beam at the Mainz Microtron MAM
In a companion pro, collposal it is proposed to align quadrupoles of a transport line to within tran...
Laser wakefield accelerators as a novel source of high-energy electron beam [1] are prominent candid...
A two-year Large Aperture Quadrupole (WQB) Project was completed in the summer of 2006 at Fermilab. ...
The application of quadrupole devices with high field gradients and small apertures requires precise...
The application of quadrupoles with high or ultra-high gradient and small apertures requires a preci...
An adjustable permanent magnet quadrupole has been developed for the final focus (FF) in a linear co...
Advanced high-brightness beam applications such as inverse-Compton scattering (ICS) depend on achiev...
We study how the critical gradient depends on the coil layout in a superconducting quadrupole for pa...
The final focus system for the Thomson X-ray scattering experiment termed PLEIADES (Picosecond Laser...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
International audienceWe present the magnetic and the mechanical design of tunable high gradient per...
International audienceThis paper presents an innovative compact permanent magnet quadrupole with a s...
The laser plasma accelerator has shown a great promise where it uses plasma wakefields achieving gra...
A permanent magnet quadrupole (PMQ) is one of the candidates for the final focus lens in a linear co...
Permanent magnets which show the highest magnetic flux density, have been used in constructing an in...
In a companion pro, collposal it is proposed to align quadrupoles of a transport line to within tran...
Laser wakefield accelerators as a novel source of high-energy electron beam [1] are prominent candid...
A two-year Large Aperture Quadrupole (WQB) Project was completed in the summer of 2006 at Fermilab. ...
The application of quadrupole devices with high field gradients and small apertures requires precise...
The application of quadrupoles with high or ultra-high gradient and small apertures requires a preci...
An adjustable permanent magnet quadrupole has been developed for the final focus (FF) in a linear co...
Advanced high-brightness beam applications such as inverse-Compton scattering (ICS) depend on achiev...
We study how the critical gradient depends on the coil layout in a superconducting quadrupole for pa...
The final focus system for the Thomson X-ray scattering experiment termed PLEIADES (Picosecond Laser...
The improvement of the energy spread, beam divergence, and pointing fluctuations are some of the mai...
International audienceWe present the magnetic and the mechanical design of tunable high gradient per...
International audienceThis paper presents an innovative compact permanent magnet quadrupole with a s...
The laser plasma accelerator has shown a great promise where it uses plasma wakefields achieving gra...
A permanent magnet quadrupole (PMQ) is one of the candidates for the final focus lens in a linear co...
Permanent magnets which show the highest magnetic flux density, have been used in constructing an in...
In a companion pro, collposal it is proposed to align quadrupoles of a transport line to within tran...
Laser wakefield accelerators as a novel source of high-energy electron beam [1] are prominent candid...
A two-year Large Aperture Quadrupole (WQB) Project was completed in the summer of 2006 at Fermilab. ...