The EuroCirCol project is part of the Future Circular Collider (FCC) study under the European Union leadership in the framework of a H2020 project. In particular, the Italian Institute for Nuclear Physics, in collaboration with CERN and other European laboratories, is developing the design of a cos theta Nb3Sn dipole magnet which will be part of the Conceptual Design Report of the FCC studies in 2019. The magnet, with an aperture diameter of 50 mm and a bore field of 16 T, will be able to bend the beams at final energies and within collider size constraints. Here we present an update of the electromagnetic design of the Nb3Sn cos theta dipole in double-aperture configuration, the 2-D mechanical analysis, and also the 3-D coil-ends study.
Baseline design of a 16 T cos θ bending dipole for the future circular collider / Valente, Riccardo Umberto; Bellomo, Giovanni; Caiffi, Barbara; Fabbricatore, Pasquale; Farinon, Stefania; Mariotto, Samuele; Pampaloni, Alessandra; Ricci, Alessandro Maria; Sorbi, Massimo; Statera, Marco. - In: IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY. - ISSN 1051-8223. - 29:5(2019), pp. 1-6. [10.1109/TASC.2019.2901604]
Baseline design of a 16 T cos θ bending dipole for the future circular collider
Valente, Riccardo Umberto
;
2019
Abstract
The EuroCirCol project is part of the Future Circular Collider (FCC) study under the European Union leadership in the framework of a H2020 project. In particular, the Italian Institute for Nuclear Physics, in collaboration with CERN and other European laboratories, is developing the design of a cos theta Nb3Sn dipole magnet which will be part of the Conceptual Design Report of the FCC studies in 2019. The magnet, with an aperture diameter of 50 mm and a bore field of 16 T, will be able to bend the beams at final energies and within collider size constraints. Here we present an update of the electromagnetic design of the Nb3Sn cos theta dipole in double-aperture configuration, the 2-D mechanical analysis, and also the 3-D coil-ends study.File | Dimensione | Formato | |
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Valente_Baseline_2019.pdf
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