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Modelling Control Loops for SPS-LHC Beam Transfer Studies

In the HL-LHC era, the injection of SPS beams might lead to beam losses and RF power limitations in the LHC. An accurate simulation model of both the SPS and LHC control loops in the longitudinal beam dynamics simulator BLonD is indispensable for estimating these beam losses and power limitations....

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Detalles Bibliográficos
Autor principal: Karlsen-Baeck, Birk Emil
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2837220
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author Karlsen-Baeck, Birk Emil
author_facet Karlsen-Baeck, Birk Emil
author_sort Karlsen-Baeck, Birk Emil
collection CERN
description In the HL-LHC era, the injection of SPS beams might lead to beam losses and RF power limitations in the LHC. An accurate simulation model of both the SPS and LHC control loops in the longitudinal beam dynamics simulator BLonD is indispensable for estimating these beam losses and power limitations. This thesis presents simulation models and benchmarks for the SPS and LHC cavity controllers that control the RF voltage in amplitude and phase in the SPS and LHC accelerating cavities, in high beam-loading conditions. High-intensity, multi-bunch beam distributions can be accurately modelled in the SPS using the SPS cavity controller model, which will be necessary for future beam transfer studies. The SPS model was found to show good agreement with beam measurement data and measurements of the LHC cavity loop transfer functions were accurately reproduced by the LHC cavity loop model.
id cern-2837220
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28372202022-12-21T22:13:56Zhttp://cds.cern.ch/record/2837220engKarlsen-Baeck, Birk EmilModelling Control Loops for SPS-LHC Beam Transfer StudiesAccelerators and Storage RingsIn the HL-LHC era, the injection of SPS beams might lead to beam losses and RF power limitations in the LHC. An accurate simulation model of both the SPS and LHC control loops in the longitudinal beam dynamics simulator BLonD is indispensable for estimating these beam losses and power limitations. This thesis presents simulation models and benchmarks for the SPS and LHC cavity controllers that control the RF voltage in amplitude and phase in the SPS and LHC accelerating cavities, in high beam-loading conditions. High-intensity, multi-bunch beam distributions can be accurately modelled in the SPS using the SPS cavity controller model, which will be necessary for future beam transfer studies. The SPS model was found to show good agreement with beam measurement data and measurements of the LHC cavity loop transfer functions were accurately reproduced by the LHC cavity loop model.CERN-THESIS-2022-159oai:cds.cern.ch:28372202022-10-18T12:44:59Z
spellingShingle Accelerators and Storage Rings
Karlsen-Baeck, Birk Emil
Modelling Control Loops for SPS-LHC Beam Transfer Studies
title Modelling Control Loops for SPS-LHC Beam Transfer Studies
title_full Modelling Control Loops for SPS-LHC Beam Transfer Studies
title_fullStr Modelling Control Loops for SPS-LHC Beam Transfer Studies
title_full_unstemmed Modelling Control Loops for SPS-LHC Beam Transfer Studies
title_short Modelling Control Loops for SPS-LHC Beam Transfer Studies
title_sort modelling control loops for sps-lhc beam transfer studies
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2837220
work_keys_str_mv AT karlsenbaeckbirkemil modellingcontrolloopsforspslhcbeamtransferstudies