After several years of effort, the construction of the superconducting matching quadrupoles for the LHC insertions is nearing completion. We retrace the main events of the project from the initial development of the quadrupole magnets of several types to the series production of over 100 complex superconducting magnets, and report on the techniques developed for steering of the production. The main performance parameters for the full series, such as quench training, field quality and magnet geometry are presented. The experience gained in the production of these special superconducting magnets is of considerable value for further development of the LHC insertions
As part of the US LHC program to develop high gradient superconducting quadrupoles for the LHC inter...
The LHC dispersion suppressors and matching sections will be equipped with individually powered supe...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
After several years of effort, the construction of the superconducting matching quadrupoles for the ...
Special individually powered superconducting quadrupoles are required for the LHC insertions. These ...
INDIVIDUAL MAGNETS The optics flexibility of the LHC insertions is provided by the individually powe...
The LHC insertions are equipped with individually powered superconducting quadrupole assemblies comp...
The construction of three prototype arc quadrupoles for the LHC machine has been concluded successfu...
The LHC dispersion suppressors and matching sections will be equipped with individually powered supe...
The Large Hadron Collider (LHC) will be equipped with several thousands of superconducting corrector...
developing a quadrupole for installation in the interaction region inner triplets of the LHC. This m...
The Large Hadron Collider (LHC) will be equipped with a large number (6400) of superconducting corre...
Two 1-m model magnets for the LHC low-beta insertion quadrupole have been developed. One was fabrica...
The European Organization for Nuclear Research (CERN) is constructing the Large Hadron Collider (LHC...
The development of the magnets for the CERN LHC is progressing from the stage of 1 m long model magn...
As part of the US LHC program to develop high gradient superconducting quadrupoles for the LHC inter...
The LHC dispersion suppressors and matching sections will be equipped with individually powered supe...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
After several years of effort, the construction of the superconducting matching quadrupoles for the ...
Special individually powered superconducting quadrupoles are required for the LHC insertions. These ...
INDIVIDUAL MAGNETS The optics flexibility of the LHC insertions is provided by the individually powe...
The LHC insertions are equipped with individually powered superconducting quadrupole assemblies comp...
The construction of three prototype arc quadrupoles for the LHC machine has been concluded successfu...
The LHC dispersion suppressors and matching sections will be equipped with individually powered supe...
The Large Hadron Collider (LHC) will be equipped with several thousands of superconducting corrector...
developing a quadrupole for installation in the interaction region inner triplets of the LHC. This m...
The Large Hadron Collider (LHC) will be equipped with a large number (6400) of superconducting corre...
Two 1-m model magnets for the LHC low-beta insertion quadrupole have been developed. One was fabrica...
The European Organization for Nuclear Research (CERN) is constructing the Large Hadron Collider (LHC...
The development of the magnets for the CERN LHC is progressing from the stage of 1 m long model magn...
As part of the US LHC program to develop high gradient superconducting quadrupoles for the LHC inter...
The LHC dispersion suppressors and matching sections will be equipped with individually powered supe...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...