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Protection of the LHC against Unsynchronised Beam Aborts

An unsynchronised beam abort in the LHC could damage downstream accelerator components, in particular the extraction septum magnets, the experimental low-beta triplet magnet apertures and the tertiary collimators. Although the LHC beam dumping system includes design features to minimise their freque...

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Detalles Bibliográficos
Autores principales: Goddard, B, Assmann, R W, Carlier, E, Uythoven, J, Wenninger, J, Weterings, W
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/972205
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author Goddard, B
Assmann, R W
Carlier, E
Uythoven, J
Wenninger, J
Weterings, W
author_facet Goddard, B
Assmann, R W
Carlier, E
Uythoven, J
Wenninger, J
Weterings, W
author_sort Goddard, B
collection CERN
description An unsynchronised beam abort in the LHC could damage downstream accelerator components, in particular the extraction septum magnets, the experimental low-beta triplet magnet apertures and the tertiary collimators. Although the LHC beam dumping system includes design features to minimise their frequency, such unsynchronised aborts cannot be excluded. A system of protection devices comprising fixed and moveable diluters and collimators will protect the downstream LHC aperture from the misdirected bunches in case of such a failure. The sources of unsynchronised aborts are described, together with the requirements and design of the protection devices and their expected performance. The accompanying operational requirements and envisaged solutions are discussed, in particular the problem of ensuring the local orbit at the protection devices.
id cern-972205
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-9722052023-05-31T13:23:30Zhttp://cds.cern.ch/record/972205engGoddard, BAssmann, R WCarlier, EUythoven, JWenninger, JWeterings, WProtection of the LHC against Unsynchronised Beam AbortsAccelerators and Storage RingsAn unsynchronised beam abort in the LHC could damage downstream accelerator components, in particular the extraction septum magnets, the experimental low-beta triplet magnet apertures and the tertiary collimators. Although the LHC beam dumping system includes design features to minimise their frequency, such unsynchronised aborts cannot be excluded. A system of protection devices comprising fixed and moveable diluters and collimators will protect the downstream LHC aperture from the misdirected bunches in case of such a failure. The sources of unsynchronised aborts are described, together with the requirements and design of the protection devices and their expected performance. The accompanying operational requirements and envisaged solutions are discussed, in particular the problem of ensuring the local orbit at the protection devices.LHC-PROJECT-Report-916CERN-LHC-Project-Report-916oai:cds.cern.ch:9722052006-07-13
spellingShingle Accelerators and Storage Rings
Goddard, B
Assmann, R W
Carlier, E
Uythoven, J
Wenninger, J
Weterings, W
Protection of the LHC against Unsynchronised Beam Aborts
title Protection of the LHC against Unsynchronised Beam Aborts
title_full Protection of the LHC against Unsynchronised Beam Aborts
title_fullStr Protection of the LHC against Unsynchronised Beam Aborts
title_full_unstemmed Protection of the LHC against Unsynchronised Beam Aborts
title_short Protection of the LHC against Unsynchronised Beam Aborts
title_sort protection of the lhc against unsynchronised beam aborts
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/972205
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AT assmannrw protectionofthelhcagainstunsynchronisedbeamaborts
AT carliere protectionofthelhcagainstunsynchronisedbeamaborts
AT uythovenj protectionofthelhcagainstunsynchronisedbeamaborts
AT wenningerj protectionofthelhcagainstunsynchronisedbeamaborts
AT weteringsw protectionofthelhcagainstunsynchronisedbeamaborts