MQXC is a Nb-Ti quadrupole designed to meet the accelerator quality requirements needed for the phase-1 LHC upgrade, now superseded by the high luminosity upgrade foreseen in 2021. The 2-m-long model magnet was tested at room temperature and 1.9 K. The technology developed for this magnet is relevant for other magnets currently under development for the high-luminosity upgrade, namely D1 (at KEK) and the large aperture twin quadrupole Q4 (at CEA). In this paper we present MQXC test results, some of the specialized heat extraction features, spot heaters, temperature sensor mounting and voltage tap development for the special open cable insulation. We look at some problem solving with noisy signals, give an overview of electrical testing, loo...
After final installation in the LHC tunnel, the MQM and MQY quadrupole magnets of the LHC insertions...
Superconducting accelerator magnets with increasingly high magnetic fields are being designed to imp...
For the high luminosity upgrade of the CERN large hadron collider, lower β∗ quadrupole magnets based...
In 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten year...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...
The quadrupole magnets for the LHC upgrade to higher luminosity are jointly developed by CERN and US...
The European Organization for Nuclear Research (CERN) and U.S. LHC Accelerator Research Program (LAR...
The development of Nb3Sn quadrupole magnets for the High-Luminosity LHC upgrade is a joint venture b...
The high-luminosity upgrade of the large hadron collider (HL-LHC) requires new high-field and large-...
International audienceThe development of $Nb_3Sn$ quadrupole magnets for the High-Luminosity LHC upg...
In the framework of the High-Luminosity Large Hadron Collider, the installation of a new generation ...
In superconducting magnets with large energies, quench protection heaters (QPHs) are necessary to pr...
The U.S. LHC Accelerator Research Program (LARP) and CERN combined their efforts in developing Nb3Sn...
The HiLumi program is aiming to develop and build new Nb3Sn, high-field (12 T), and large-aperture (...
NbTi-based Rutherford cables are used in the coils of the Large Hadron Collider (LHC) magnets. These...
After final installation in the LHC tunnel, the MQM and MQY quadrupole magnets of the LHC insertions...
Superconducting accelerator magnets with increasingly high magnetic fields are being designed to imp...
For the high luminosity upgrade of the CERN large hadron collider, lower β∗ quadrupole magnets based...
In 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten year...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...
The quadrupole magnets for the LHC upgrade to higher luminosity are jointly developed by CERN and US...
The European Organization for Nuclear Research (CERN) and U.S. LHC Accelerator Research Program (LAR...
The development of Nb3Sn quadrupole magnets for the High-Luminosity LHC upgrade is a joint venture b...
The high-luminosity upgrade of the large hadron collider (HL-LHC) requires new high-field and large-...
International audienceThe development of $Nb_3Sn$ quadrupole magnets for the High-Luminosity LHC upg...
In the framework of the High-Luminosity Large Hadron Collider, the installation of a new generation ...
In superconducting magnets with large energies, quench protection heaters (QPHs) are necessary to pr...
The U.S. LHC Accelerator Research Program (LARP) and CERN combined their efforts in developing Nb3Sn...
The HiLumi program is aiming to develop and build new Nb3Sn, high-field (12 T), and large-aperture (...
NbTi-based Rutherford cables are used in the coils of the Large Hadron Collider (LHC) magnets. These...
After final installation in the LHC tunnel, the MQM and MQY quadrupole magnets of the LHC insertions...
Superconducting accelerator magnets with increasingly high magnetic fields are being designed to imp...
For the high luminosity upgrade of the CERN large hadron collider, lower β∗ quadrupole magnets based...