A study was performed to understand the quench behavior and ensure adequate quench protection of the canted cosine theta (CCT) twin aperture orbit corrector magnet, a superconducting magnet under development as part of the high-luminosity upgrade of the Large Hadron Collider (HL-LHC). The cosine theta geometry features canted superconducting coils, which together produce a magnetic dipole field. The NbTi/Cu strands are placed in slots inside formers that maintain the shape of the coils. The presence of these formers affects the quench behavior of the magnet by preventing direct thermal contact between adjacent groups of strands. At the same time, a discharge of the stored energy over an external resistor results in significant eddy current ...
A new and promising method for the protection of superconducting high-field magnets is developed and...
In order to further enhance its discovery potential, LHC will be upgraded in the framework of the Hi...
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 new superconducting quadrupole and dipole magnets for the High Luminosity LHC (HL-LHC) will rely...
From 2016, Paul Scherrer Institut (PSI) started an activity related to developing design, constructi...
In the frame of the high-luminosity upgrade project (HL-LHC) at CERN, a double aperture, independent...
The beam separation dipole magnet (D1), which is being operated in the large hadron collider (LHC), ...
The HiLumi program is aiming to develop and build new Nb3Sn, high-field (12 T), and large-aperture (...
This paper presents a study of the thermal effects on quench performance for several Large Hadron Co...
The planned upgrade of the Large Hadron Collider collimation system requires the installation of 11 ...
In superconducting magnets with large energies, quench protection heaters (QPHs) are necessary to pr...
High gradient quadrupoles are being developed by the US-LHC Accelerator project for the LHC interact...
Email Print Request Permissions Save to Project A new and promising method for the prot...
The European Organization for Nuclear Research (CERN) and U.S. LHC Accelerator Research Program (LAR...
A new and promising method for the protection of superconducting high-field magnets is developed and...
In order to further enhance its discovery potential, LHC will be upgraded in the framework of the Hi...
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 new superconducting quadrupole and dipole magnets for the High Luminosity LHC (HL-LHC) will rely...
From 2016, Paul Scherrer Institut (PSI) started an activity related to developing design, constructi...
In the frame of the high-luminosity upgrade project (HL-LHC) at CERN, a double aperture, independent...
The beam separation dipole magnet (D1), which is being operated in the large hadron collider (LHC), ...
The HiLumi program is aiming to develop and build new Nb3Sn, high-field (12 T), and large-aperture (...
This paper presents a study of the thermal effects on quench performance for several Large Hadron Co...
The planned upgrade of the Large Hadron Collider collimation system requires the installation of 11 ...
In superconducting magnets with large energies, quench protection heaters (QPHs) are necessary to pr...
High gradient quadrupoles are being developed by the US-LHC Accelerator project for the LHC interact...
Email Print Request Permissions Save to Project A new and promising method for the prot...
The European Organization for Nuclear Research (CERN) and U.S. LHC Accelerator Research Program (LAR...
A new and promising method for the protection of superconducting high-field magnets is developed and...
In order to further enhance its discovery potential, LHC will be upgraded in the framework of the Hi...
n 2023, the LHC luminosity will be increased, aiming at reaching 3000 fb-1 integrated over ten years...