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Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation

Canted Cosine Theta layout for accelerator magnets is a very attractive since such magnets can be manufactured and assembled without big tooling, and with a relatively modest number of parts and tools. In the frame of European Horizon2020 funds, two collaborations, HITRIplusand I.FAST, are developin...

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Autores principales: Matteis, E De, Barna, D, Ceruti, G, Kirby, G, Lecrevisse, T, Mariotto, S, Perini, D, Prioli, M, Rossi, L, Scibor, K, Statera, M, Sorbi, M, Sorti, S, Toral, F, Valente, R U
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2023.3259330
http://cds.cern.ch/record/2857860
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author Matteis, E De
Barna, D
Ceruti, G
Kirby, G
Lecrevisse, T
Mariotto, S
Perini, D
Prioli, M
Rossi, L
Scibor, K
Statera, M
Sorbi, M
Sorti, S
Toral, F
Valente, R U
author_facet Matteis, E De
Barna, D
Ceruti, G
Kirby, G
Lecrevisse, T
Mariotto, S
Perini, D
Prioli, M
Rossi, L
Scibor, K
Statera, M
Sorbi, M
Sorti, S
Toral, F
Valente, R U
author_sort Matteis, E De
collection CERN
description Canted Cosine Theta layout for accelerator magnets is a very attractive since such magnets can be manufactured and assembled without big tooling, and with a relatively modest number of parts and tools. In the frame of European Horizon2020 funds, two collaborations, HITRIplusand I.FAST, are developing a CCT design, of 80 mm free bore, 4 T central dipole field, and 0.4 T/s ramp-rate. This magnet is expected to be the bending element of a gantry, to control the beam delivery in therapy with ions (hadrontherapy). The paper illustrates first a comparison between CCT and more classical cosine theta layout, followed by the comparison between Nb-Ti, Nb3Sn, MgB2, and HTS tapes coils. Relevant requirement for the magnets of this study is to be operated at low current, to limit the heat generation, in sight of a liquid-free cooling system. The results of the comparison is then applied to the design of two magnet demonstrators. Both adopt a low-losses Nb-Ti rope, consistently with the need for keeping the heat generation as low as possible. The first is a straight combined function dipole-quadrupole, while the second is a curved CCT dipole. The paper concludes with the first manufacturing tests for the CCT formers, for which aluminium -bronze, stainless steel and charged PEEK polymer are being explored as basic material.
id cern-2857860
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28578602023-05-05T18:57:08Zdoi:10.1109/TASC.2023.3259330http://cds.cern.ch/record/2857860engMatteis, E DeBarna, DCeruti, GKirby, GLecrevisse, TMariotto, SPerini, DPrioli, MRossi, LScibor, KStatera, MSorbi, MSorti, SToral, FValente, R UStraight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping OperationAccelerators and Storage RingsCanted Cosine Theta layout for accelerator magnets is a very attractive since such magnets can be manufactured and assembled without big tooling, and with a relatively modest number of parts and tools. In the frame of European Horizon2020 funds, two collaborations, HITRIplusand I.FAST, are developing a CCT design, of 80 mm free bore, 4 T central dipole field, and 0.4 T/s ramp-rate. This magnet is expected to be the bending element of a gantry, to control the beam delivery in therapy with ions (hadrontherapy). The paper illustrates first a comparison between CCT and more classical cosine theta layout, followed by the comparison between Nb-Ti, Nb3Sn, MgB2, and HTS tapes coils. Relevant requirement for the magnets of this study is to be operated at low current, to limit the heat generation, in sight of a liquid-free cooling system. The results of the comparison is then applied to the design of two magnet demonstrators. Both adopt a low-losses Nb-Ti rope, consistently with the need for keeping the heat generation as low as possible. The first is a straight combined function dipole-quadrupole, while the second is a curved CCT dipole. The paper concludes with the first manufacturing tests for the CCT formers, for which aluminium -bronze, stainless steel and charged PEEK polymer are being explored as basic material.oai:cds.cern.ch:28578602023
spellingShingle Accelerators and Storage Rings
Matteis, E De
Barna, D
Ceruti, G
Kirby, G
Lecrevisse, T
Mariotto, S
Perini, D
Prioli, M
Rossi, L
Scibor, K
Statera, M
Sorbi, M
Sorti, S
Toral, F
Valente, R U
Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title_full Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title_fullStr Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title_full_unstemmed Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title_short Straight and Curved Canted Cosine Theta Superconducting Dipoles for Ion Therapy: Comparison Between Various Design Options and Technologies for Ramping Operation
title_sort straight and curved canted cosine theta superconducting dipoles for ion therapy: comparison between various design options and technologies for ramping operation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2023.3259330
http://cds.cern.ch/record/2857860
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