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The ITER Magnets: Design and Construction Status
The ITER magnet procurement is now well underway. The magnet systems consist of 4 superconducting coil sets (toroidal field (TF), poloidal field (PF), central solenoid (CS) and correction coils (CC))Expand
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Status of the 16 T Dipole Development Program for a Future Hadron Collider
A next step of energy increase of hadron colliders beyond the LHC requires high-field superconducting magnets capable of providing a dipolar field in the range of 16 T in a 50-mm aperture withExpand
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The 16 T Dipole Development Program for FCC and HE-LHC
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of around 100 km, or an energy upgrade of the LHC (HE-LHC) to 27 TeV require bending magnets providing 16Expand
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Analysis of Temperature Uniformity During Heat Treatment of Nb3Sn Coils for the High-Luminosity LHC Superconducting Magnets
The High-Luminosity upgrade of the Large Hadron Collider at CERN comprises the implementation of a new generation of high-field superconducting quadrupole and dipole magnets. The dipole fields of upExpand
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Performance of the LHC final prototype and first pre-series superconducting dipole magnets
Within the LHC cryo-dipole program, six full-scale superconducting prototypes of final design were built in collaboration between Industry and CERN, followed by launching the manufacture ofExpand
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The 11 T Dipole for HL-LHC: Status and Plan
The upgrade of the Large Hadron Collider (LHC) collimation system includes additional collimators in the LHC lattice. The longitudinal space for these collimators will be created by replacing some ofExpand
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Progress on the Development of the Nb3Sn 11T Dipole for the High Luminosity Upgrade of LHC
The high-luminosity large hadron collider (LHC) project at CERN entered into the production phase in October 2015 after the completion of the design study phase. In the meantime, the development ofExpand
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Design, Assembly, and Test of the CERN 2-m Long 11 T Dipole in Single Coil Configuration
The upgrade of the LHC collimation system includes additional collimators in the LHC lattice. The longitudinal space for the collimators can be obtained by replacing some LHC main dipoles withExpand
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CONSOLIDATION OF THE LHC SUPERCONDUCTING CIRCUITS: A MAJOR STEP TOWARDS 14 TeV COLLISIONS
Following the incident in one of the main dipole circuits of the Large Hadron Collider (LHC) in September 2008, a detailed analysis of all magnet circuits has been performed by a dedicated taskExpand
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