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Conceptual design of superferric magnets for PS2

We analyze feasibility and cost of a superferric magnet design for the PS2. Specifically, we provide the conceptual design of dipole and quadrupoles, including considerations on cryogenics and powering. The magnets have warm iron yoke, and cryostated superconducting coils embedded in the magnet, whi...

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Detalles Bibliográficos
Autores principales: Bottura, L, MacCaferri, R, Maglioni, C, Parma, V, de Rijk, G, Rossi, L, Scandale, Walter, Serio, L, Tommasini, D
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1071510
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author Bottura, L
MacCaferri, R
Maglioni, C
Parma, V
de Rijk, G
Rossi, L
Scandale, Walter
Serio, L
Tommasini, D
author_facet Bottura, L
MacCaferri, R
Maglioni, C
Parma, V
de Rijk, G
Rossi, L
Scandale, Walter
Serio, L
Tommasini, D
author_sort Bottura, L
collection CERN
description We analyze feasibility and cost of a superferric magnet design for the PS2. Specifically, we provide the conceptual design of dipole and quadrupoles, including considerations on cryogenics and powering. The magnets have warm iron yoke, and cryostated superconducting coils embedded in the magnet, which reduces AC loss at cryogenic temperature. The superconductor has large Operating margin to endure beam loss and operating loads over a long period of time. Although conservative, and without any critical dependence on novel technology developments, this superconducting option appears to be attractive as a low-power alternative to the normal-conducting magnets that are the present baseline for the PS2 design. In addition it provides flexibility in the selection of flat-top duration at no additional cost. This study is the conclusion of the conceptual design work started within the scope of the CARE HHH-AMT activities, following inputs from the workshops ECOMAG and LUMI-06, and finally spurred by the recent discussions on the opportunity of an R&D for the PS2 magnets.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
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spelling cern-10715102019-09-30T06:29:59Zhttp://cds.cern.ch/record/1071510engBottura, LMacCaferri, RMaglioni, CParma, Vde Rijk, GRossi, LScandale, WalterSerio, LTommasini, DConceptual design of superferric magnets for PS2Accelerators and Storage RingsWe analyze feasibility and cost of a superferric magnet design for the PS2. Specifically, we provide the conceptual design of dipole and quadrupoles, including considerations on cryogenics and powering. The magnets have warm iron yoke, and cryostated superconducting coils embedded in the magnet, which reduces AC loss at cryogenic temperature. The superconductor has large Operating margin to endure beam loss and operating loads over a long period of time. Although conservative, and without any critical dependence on novel technology developments, this superconducting option appears to be attractive as a low-power alternative to the normal-conducting magnets that are the present baseline for the PS2 design. In addition it provides flexibility in the selection of flat-top duration at no additional cost. This study is the conclusion of the conceptual design work started within the scope of the CARE HHH-AMT activities, following inputs from the workshops ECOMAG and LUMI-06, and finally spurred by the recent discussions on the opportunity of an R&D for the PS2 magnets.CERN-AT-2007-031CARE-Note-2007-019-HHHoai:cds.cern.ch:10715102007-11-23
spellingShingle Accelerators and Storage Rings
Bottura, L
MacCaferri, R
Maglioni, C
Parma, V
de Rijk, G
Rossi, L
Scandale, Walter
Serio, L
Tommasini, D
Conceptual design of superferric magnets for PS2
title Conceptual design of superferric magnets for PS2
title_full Conceptual design of superferric magnets for PS2
title_fullStr Conceptual design of superferric magnets for PS2
title_full_unstemmed Conceptual design of superferric magnets for PS2
title_short Conceptual design of superferric magnets for PS2
title_sort conceptual design of superferric magnets for ps2
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1071510
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