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Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC

The Falcon Dipole (Future Accelerator post-LHC Cos-theta Optimized $\rm {Nb_3Sn}$ Dipole) is a single aperture $\rm {Nb_3Sn}$cos-theta dipole short model in the framework of the Future Circular Collider (FCC) project. The Italian Institute of Nuclear Physics (INFN), in collaboration with CERN, is in...

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Detalles Bibliográficos
Autores principales: Valente, Riccardo Umberto, Bellomo, G, Burioli, S, Matteis, E De, Fabbricatore, P, Farinon, S, Lackner, F, Levi, F, Mariotto, S, Musenich, R, Pampaloni, A, Prioli, M, Sorbi, M, Statera, M, Tommasini, D
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2021.3059981
http://cds.cern.ch/record/2770772
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author Valente, Riccardo Umberto
Bellomo, G
Burioli, S
Matteis, E De
Fabbricatore, P
Farinon, S
Lackner, F
Levi, F
Mariotto, S
Musenich, R
Pampaloni, A
Prioli, M
Sorbi, M
Statera, M
Tommasini, D
author_facet Valente, Riccardo Umberto
Bellomo, G
Burioli, S
Matteis, E De
Fabbricatore, P
Farinon, S
Lackner, F
Levi, F
Mariotto, S
Musenich, R
Pampaloni, A
Prioli, M
Sorbi, M
Statera, M
Tommasini, D
author_sort Valente, Riccardo Umberto
collection CERN
description The Falcon Dipole (Future Accelerator post-LHC Cos-theta Optimized $\rm {Nb_3Sn}$ Dipole) is a single aperture $\rm {Nb_3Sn}$cos-theta dipole short model in the framework of the Future Circular Collider (FCC) project. The Italian Institute of Nuclear Physics (INFN), in collaboration with CERN, is in charge of designing and constructing the magnet, which is a crucial step towards the construction of High Field $\rm {Nb_3Sn}$magnets suitable for a post LHC collider. This paper recalls the electromagnetic design, the field quality and performances of the Falcon Dipole. The coil ends design has been implemented in a 3D FEM to study the peak field distribution on the magnet and influence on field quality. A special focus is given to the 2D analysis to study the effect of superconductor magnetization on field quality from the injection to the final energy and then to investigate the effectiveness of compensation methods.
id oai-inspirehep.net-1860687
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling oai-inspirehep.net-18606872021-05-31T15:10:44Zdoi:10.1109/TASC.2021.3059981http://cds.cern.ch/record/2770772engValente, Riccardo UmbertoBellomo, GBurioli, SMatteis, E DeFabbricatore, PFarinon, SLackner, FLevi, FMariotto, SMusenich, RPampaloni, APrioli, MSorbi, MStatera, MTommasini, DStudy of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCCAccelerators and Storage RingsThe Falcon Dipole (Future Accelerator post-LHC Cos-theta Optimized $\rm {Nb_3Sn}$ Dipole) is a single aperture $\rm {Nb_3Sn}$cos-theta dipole short model in the framework of the Future Circular Collider (FCC) project. The Italian Institute of Nuclear Physics (INFN), in collaboration with CERN, is in charge of designing and constructing the magnet, which is a crucial step towards the construction of High Field $\rm {Nb_3Sn}$magnets suitable for a post LHC collider. This paper recalls the electromagnetic design, the field quality and performances of the Falcon Dipole. The coil ends design has been implemented in a 3D FEM to study the peak field distribution on the magnet and influence on field quality. A special focus is given to the 2D analysis to study the effect of superconductor magnetization on field quality from the injection to the final energy and then to investigate the effectiveness of compensation methods.oai:inspirehep.net:18606872021
spellingShingle Accelerators and Storage Rings
Valente, Riccardo Umberto
Bellomo, G
Burioli, S
Matteis, E De
Fabbricatore, P
Farinon, S
Lackner, F
Levi, F
Mariotto, S
Musenich, R
Pampaloni, A
Prioli, M
Sorbi, M
Statera, M
Tommasini, D
Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title_full Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title_fullStr Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title_full_unstemmed Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title_short Study of Superconducting Magnetization Effects and 3D Electromagnetic Analysis of the Nb$_3$Sn cos$\theta$ Short Model for FCC
title_sort study of superconducting magnetization effects and 3d electromagnetic analysis of the nb$_3$sn cos$\theta$ short model for fcc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2021.3059981
http://cds.cern.ch/record/2770772
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