The experimental insertions of the LHC make use of normal-conducting magnets to provide for part of the beam separation and to compensate the effect of two large spectrometer dipoles. Three different types with respect to the length were designed and are based on the same type of lamination. The main type of magnet MBXW has a core length of 3.4 m while the MBXWT and MBXWS magnets are 1.5 m and 0.75 m long versions respectively. The magnet design was done in collaboration between CERN and BINP and the dipole magnets are produced by BINP. So far all three MBXWS magnets, all three MBXWT magnets and fifteen of twenty-nine MBXW magnets have been manufactured and delivered to CERN. The report presents the main design issues and results of the acc...
The luminosity upgrade of the Large Hadron Collider (LHC) at CERN requires the installation of addit...
Two injection transfer lines, each about 2.8 km long, with 51 and 107 degree horizontal deflection, ...
We report the main results of the magnetic field measurements performed on the full-size LHC superco...
Abstract The Large Hadron Collider, due for commissioning in 2005, features a large and complex magn...
The Large Hadron Collider comprises eight insertions, four of which are dedicated to the LHC experim...
A number of twin aperture, 10 m long, model dipole magnets for the LHC Project have been built and t...
We review the warm magnetic measurements of the first four main dipole prototypes (8 apertures) and ...
The LHC dipoles magnets are produced in 5 industrial production sites in Europe. The production is w...
In this paper we discuss even multipolar components of the Large Hadron Collider dipole in relation ...
A significant reduction of B* will be determinant to push the LHC luminosity by a factor 2 to 10. Be...
The 15 m long main dipoles for the Large Hadron Collider have now been installed in their final posi...
Superconducting magnets built at the Brookhaven National Laboratory will be installed in both the In...
CERN's Large Hadron Collider (LHC) requires 48 twin aperture resistive quadrupoles in the beam clean...
The Large Hadron Collider (LHC) presently under construction at the European Laboratory for Particle...
At present about 90% of the main dipoles for the LHC have been manufactured and one of the three col...
The luminosity upgrade of the Large Hadron Collider (LHC) at CERN requires the installation of addit...
Two injection transfer lines, each about 2.8 km long, with 51 and 107 degree horizontal deflection, ...
We report the main results of the magnetic field measurements performed on the full-size LHC superco...
Abstract The Large Hadron Collider, due for commissioning in 2005, features a large and complex magn...
The Large Hadron Collider comprises eight insertions, four of which are dedicated to the LHC experim...
A number of twin aperture, 10 m long, model dipole magnets for the LHC Project have been built and t...
We review the warm magnetic measurements of the first four main dipole prototypes (8 apertures) and ...
The LHC dipoles magnets are produced in 5 industrial production sites in Europe. The production is w...
In this paper we discuss even multipolar components of the Large Hadron Collider dipole in relation ...
A significant reduction of B* will be determinant to push the LHC luminosity by a factor 2 to 10. Be...
The 15 m long main dipoles for the Large Hadron Collider have now been installed in their final posi...
Superconducting magnets built at the Brookhaven National Laboratory will be installed in both the In...
CERN's Large Hadron Collider (LHC) requires 48 twin aperture resistive quadrupoles in the beam clean...
The Large Hadron Collider (LHC) presently under construction at the European Laboratory for Particle...
At present about 90% of the main dipoles for the LHC have been manufactured and one of the three col...
The luminosity upgrade of the Large Hadron Collider (LHC) at CERN requires the installation of addit...
Two injection transfer lines, each about 2.8 km long, with 51 and 107 degree horizontal deflection, ...
We report the main results of the magnetic field measurements performed on the full-size LHC superco...