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General Functionality for Turn-Dependent Element Properties in SixTrack

In order to facilitate studies of how dynamically changing element attributes affect the dynamics of the beam and beam losses, the functionality for dynamic kicks (DYNK) of SixTrack has been significantly extended. This functionality can be used for the simulation of dynamic scenarios, such as when...

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Detalles Bibliográficos
Autores principales: Sjobak, Kyrre, Burkhardt, Helmut, De Maria, Riccardo, Mereghetti, Alessio, Santamaría García, Andrea
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2141793
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author Sjobak, Kyrre
Burkhardt, Helmut
De Maria, Riccardo
Mereghetti, Alessio
Santamaría García, Andrea
author_facet Sjobak, Kyrre
Burkhardt, Helmut
De Maria, Riccardo
Mereghetti, Alessio
Santamaría García, Andrea
author_sort Sjobak, Kyrre
collection CERN
description In order to facilitate studies of how dynamically changing element attributes affect the dynamics of the beam and beam losses, the functionality for dynamic kicks (DYNK) of SixTrack has been significantly extended. This functionality can be used for the simulation of dynamic scenarios, such as when crab cavities are switched on, orbit bumps are applied, optics are changed, or failures occur. The functionality has been extended with a more general and flexible implementation, such that arbitrary time-dependent functions can be defined and applied to different attributes of families or individual elements, directly from the user input files. This removes the need for source code manipulation, and it is compatible with LHC@Home which offers substantial computing resources from volunteers. In this paper, the functionality and implementation of DYNK is discussed, along with examples of application to the HL-LHC crab cavities.
id oai-inspirehep.net-1417307
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling oai-inspirehep.net-14173072022-08-10T12:59:20Zhttp://cds.cern.ch/record/2141793engSjobak, KyrreBurkhardt, HelmutDe Maria, RiccardoMereghetti, AlessioSantamaría García, AndreaGeneral Functionality for Turn-Dependent Element Properties in SixTrackAccelerators and Storage RingsIn order to facilitate studies of how dynamically changing element attributes affect the dynamics of the beam and beam losses, the functionality for dynamic kicks (DYNK) of SixTrack has been significantly extended. This functionality can be used for the simulation of dynamic scenarios, such as when crab cavities are switched on, orbit bumps are applied, optics are changed, or failures occur. The functionality has been extended with a more general and flexible implementation, such that arbitrary time-dependent functions can be defined and applied to different attributes of families or individual elements, directly from the user input files. This removes the need for source code manipulation, and it is compatible with LHC@Home which offers substantial computing resources from volunteers. In this paper, the functionality and implementation of DYNK is discussed, along with examples of application to the HL-LHC crab cavities.CERN-ACC-2015-321oai:inspirehep.net:14173072015
spellingShingle Accelerators and Storage Rings
Sjobak, Kyrre
Burkhardt, Helmut
De Maria, Riccardo
Mereghetti, Alessio
Santamaría García, Andrea
General Functionality for Turn-Dependent Element Properties in SixTrack
title General Functionality for Turn-Dependent Element Properties in SixTrack
title_full General Functionality for Turn-Dependent Element Properties in SixTrack
title_fullStr General Functionality for Turn-Dependent Element Properties in SixTrack
title_full_unstemmed General Functionality for Turn-Dependent Element Properties in SixTrack
title_short General Functionality for Turn-Dependent Element Properties in SixTrack
title_sort general functionality for turn-dependent element properties in sixtrack
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2141793
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