The superconducting magnets of the ILC beam delivery system

The ILC Beam Delivery System (BDS) uses a variety of superconducting magnets to maximize luminosity and minimize background. Compact final focus quadrupoles with multifunction correction coils focus incoming beams to few nanometer spot sizes while focusing outgoing disrupted beams into a separate ex...

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Main Authors: Parker, B, Anerella, M, Escallier, J, He, P, Jain, A, Marone, A, Nosochkov, Y, Seryi, A
Format: Journal article
Language:English
Published: 2007
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author Parker, B
Anerella, M
Escallier, J
He, P
Jain, A
Marone, A
Nosochkov, Y
Seryi, A
author_facet Parker, B
Anerella, M
Escallier, J
He, P
Jain, A
Marone, A
Nosochkov, Y
Seryi, A
author_sort Parker, B
collection OXFORD
description The ILC Beam Delivery System (BDS) uses a variety of superconducting magnets to maximize luminosity and minimize background. Compact final focus quadrupoles with multifunction correction coils focus incoming beams to few nanometer spot sizes while focusing outgoing disrupted beams into a separate extraction beam line. Anti-solenoids mitigate effects from overlapping focusing and the detector solenoid field. Far from the interaction point (IP) strong octupoles help minimize IP backgrounds. A low-field but very large aperture dipole is integrated with the detector solenoid to reduce backgrounds from beamstrahlung pairs generated at the IP. Physics requirements and magnetic design solutions for the BDS superconducting magnets are reviewed in this paper. ©2007 IEEE.
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spelling oxford-uuid:366548ee-b66c-4d5f-b3ef-2c606a2bb4502022-03-26T13:37:37ZThe superconducting magnets of the ILC beam delivery systemJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:366548ee-b66c-4d5f-b3ef-2c606a2bb450EnglishSymplectic Elements at Oxford2007Parker, BAnerella, MEscallier, JHe, PJain, AMarone, ANosochkov, YSeryi, AThe ILC Beam Delivery System (BDS) uses a variety of superconducting magnets to maximize luminosity and minimize background. Compact final focus quadrupoles with multifunction correction coils focus incoming beams to few nanometer spot sizes while focusing outgoing disrupted beams into a separate extraction beam line. Anti-solenoids mitigate effects from overlapping focusing and the detector solenoid field. Far from the interaction point (IP) strong octupoles help minimize IP backgrounds. A low-field but very large aperture dipole is integrated with the detector solenoid to reduce backgrounds from beamstrahlung pairs generated at the IP. Physics requirements and magnetic design solutions for the BDS superconducting magnets are reviewed in this paper. ©2007 IEEE.
spellingShingle Parker, B
Anerella, M
Escallier, J
He, P
Jain, A
Marone, A
Nosochkov, Y
Seryi, A
The superconducting magnets of the ILC beam delivery system
title The superconducting magnets of the ILC beam delivery system
title_full The superconducting magnets of the ILC beam delivery system
title_fullStr The superconducting magnets of the ILC beam delivery system
title_full_unstemmed The superconducting magnets of the ILC beam delivery system
title_short The superconducting magnets of the ILC beam delivery system
title_sort superconducting magnets of the ilc beam delivery system
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