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Limits on Failure Scenarios for Crab Cavities in the HL-LHC

The High Luminosity (HL) LHC upgrade aims for a tenfold increase in integrated luminosity compared to the nominal LHC, and for operation at a levelled luminosity of 5 10³⁴ cm⁻².s⁻¹, which is five times higher than the nominal LHC peak luminosity. Crab Cavities (CCs) are planned to compensate the geo...

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Autores principales: Santamaría García, Andrea, Burkhardt, Helmut, Hernández-Chahín, K, Macpherson, Alick, Sjobak, Kyrre, Wollmann, Daniel, Yee-Rendón, Bruce
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2141906
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author Santamaría García, Andrea
Burkhardt, Helmut
Hernández-Chahín, K
Macpherson, Alick
Sjobak, Kyrre
Wollmann, Daniel
Yee-Rendón, Bruce
author_facet Santamaría García, Andrea
Burkhardt, Helmut
Hernández-Chahín, K
Macpherson, Alick
Sjobak, Kyrre
Wollmann, Daniel
Yee-Rendón, Bruce
author_sort Santamaría García, Andrea
collection CERN
description The High Luminosity (HL) LHC upgrade aims for a tenfold increase in integrated luminosity compared to the nominal LHC, and for operation at a levelled luminosity of 5 10³⁴ cm⁻².s⁻¹, which is five times higher than the nominal LHC peak luminosity. Crab Cavities (CCs) are planned to compensate the geometric luminosity loss created by the increased crossing angle by rotating the bunch, allowing quasi head-on collisions at the Interaction Points (IP). The CCs work by creating transverse kicks, and their failure may have short time constants comparable to the reaction time of the Machine Protection System (MPS), producing significant coherent betatron oscillations and fast emittance growth. Simulations of CC failure modes have been carried out with the tracking code SIXTRACK, using the newly added functionality called DYNK, which allows to dynamically change the attributes of the CCs. We describe these simulations and discuss early, preliminary results.
id oai-inspirehep.net-1418699
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling oai-inspirehep.net-14186992022-08-10T12:59:35Zhttp://cds.cern.ch/record/2141906engSantamaría García, AndreaBurkhardt, HelmutHernández-Chahín, KMacpherson, AlickSjobak, KyrreWollmann, DanielYee-Rendón, BruceLimits on Failure Scenarios for Crab Cavities in the HL-LHCAccelerators and Storage RingsThe High Luminosity (HL) LHC upgrade aims for a tenfold increase in integrated luminosity compared to the nominal LHC, and for operation at a levelled luminosity of 5 10³⁴ cm⁻².s⁻¹, which is five times higher than the nominal LHC peak luminosity. Crab Cavities (CCs) are planned to compensate the geometric luminosity loss created by the increased crossing angle by rotating the bunch, allowing quasi head-on collisions at the Interaction Points (IP). The CCs work by creating transverse kicks, and their failure may have short time constants comparable to the reaction time of the Machine Protection System (MPS), producing significant coherent betatron oscillations and fast emittance growth. Simulations of CC failure modes have been carried out with the tracking code SIXTRACK, using the newly added functionality called DYNK, which allows to dynamically change the attributes of the CCs. We describe these simulations and discuss early, preliminary results.CERN-ACC-2015-007oai:inspirehep.net:14186992015
spellingShingle Accelerators and Storage Rings
Santamaría García, Andrea
Burkhardt, Helmut
Hernández-Chahín, K
Macpherson, Alick
Sjobak, Kyrre
Wollmann, Daniel
Yee-Rendón, Bruce
Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title_full Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title_fullStr Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title_full_unstemmed Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title_short Limits on Failure Scenarios for Crab Cavities in the HL-LHC
title_sort limits on failure scenarios for crab cavities in the hl-lhc
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2141906
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