The low-{beta} magnet systems are located in the Large Hadron Collider (LHC) insertion regions around the four interaction points. They are the key elements in the beams focusing/defocusing process allowing proton collisions at luminosity up to 10{sup 34}cm{sup -2}s{sup -1}. Those systems are a contribution of the US-LHC Accelerator project. The systems are mainly composed of the quadrupole magnets (triplets), the separation dipoles and their respective electrical feed-boxes (DFBX). The low-{beta} magnet systems operate in an environment of extreme radiation, high gradient magnetic field and high heat load to the cryogenic system due to the beam dynamic effect. Due to the severe environment, the robustness of the diagnostics is primordial f...
Abstract—The inner triplet quadrupole magnets (MQXA) for the LHC low-beta insertion have been develo...
After two years of shutdown, the Large Hadron Collider (LHC) operated in 2015 at an energy of 6.5 Te...
The Large Hadron Collider operation relies on 1232 superconducting dipoles with a field of 8.33T and...
The low-beta magnet systems are located in the Large Hadron Collider (LHC) insertion regions around ...
The low-β magnet systems are located in the Large Hadron Collider (LHC) insertion regions around the...
The low-{beta} magnet systems are located in the LHC insertion regions around the four interaction p...
The LHC experimental insertions consist of a low-beta triplet, a pair of separation dipoles, and a m...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Abstract The Large Hadron Collider, due for commissioning in 2005, features a large and complex magn...
The LHC performance depends critically on the low-{beta}, triplets, located on either side of the fo...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Two 1-m model magnets for the LHC low-beta insertion quadrupole have been developed. One was fabrica...
The High Luminosity LHC (HL-LHC) project is aimed at studying and implementing the necessary changes...
Fermilab, as part of the US-LHC Accelerator Project, has designed and is producing superconducting l...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Abstract—The inner triplet quadrupole magnets (MQXA) for the LHC low-beta insertion have been develo...
After two years of shutdown, the Large Hadron Collider (LHC) operated in 2015 at an energy of 6.5 Te...
The Large Hadron Collider operation relies on 1232 superconducting dipoles with a field of 8.33T and...
The low-beta magnet systems are located in the Large Hadron Collider (LHC) insertion regions around ...
The low-β magnet systems are located in the Large Hadron Collider (LHC) insertion regions around the...
The low-{beta} magnet systems are located in the LHC insertion regions around the four interaction p...
The LHC experimental insertions consist of a low-beta triplet, a pair of separation dipoles, and a m...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Abstract The Large Hadron Collider, due for commissioning in 2005, features a large and complex magn...
The LHC performance depends critically on the low-{beta}, triplets, located on either side of the fo...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Two 1-m model magnets for the LHC low-beta insertion quadrupole have been developed. One was fabrica...
The High Luminosity LHC (HL-LHC) project is aimed at studying and implementing the necessary changes...
Fermilab, as part of the US-LHC Accelerator Project, has designed and is producing superconducting l...
Production of 18 superconducting low-beta quadrupoles (MQXB) for the LHC is well advanced. These 5.5...
Abstract—The inner triplet quadrupole magnets (MQXA) for the LHC low-beta insertion have been develo...
After two years of shutdown, the Large Hadron Collider (LHC) operated in 2015 at an energy of 6.5 Te...
The Large Hadron Collider operation relies on 1232 superconducting dipoles with a field of 8.33T and...