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CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario

The CERN PS Booster is the first synchrotron in the LHC proton injection chain, it currently accelerates particles from 50 MeV to 1.4 GeV kinetic energy. Several upgrades foreseen by the LHC Injectors Upgrade Program will allow the beam to be accelerated from 160 MeV to 2 GeV after Long Shutdown 2 i...

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Detalles Bibliográficos
Autores principales: Quartullo, Danilo, Albright, Simon, Shaposhnikova, Elena, Timko, Helga
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-HB2016-MOPR028
http://cds.cern.ch/record/2304644
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author Quartullo, Danilo
Albright, Simon
Shaposhnikova, Elena
Timko, Helga
author_facet Quartullo, Danilo
Albright, Simon
Shaposhnikova, Elena
Timko, Helga
author_sort Quartullo, Danilo
collection CERN
description The CERN PS Booster is the first synchrotron in the LHC proton injection chain, it currently accelerates particles from 50 MeV to 1.4 GeV kinetic energy. Several upgrades foreseen by the LHC Injectors Upgrade Program will allow the beam to be accelerated from 160 MeV to 2 GeV after Long Shutdown 2 in 2021. The present RF systems will be replaced by a new one, based on Finemet technology. These and other improvements will help to increase the LHC luminosity by a factor of ten. In order to study beam stability in the longitudinal plane simulations have been performed with the CERN BLonD code, using an accurate longitudinal impedance model and a reliable estimation of the longitudinal space charge. Particular attention has been dedicated to the three main features that currently let the beam go stably through the ramp: Double RF operation in bunch-lengthening mode to reduce the transverse space charge tune spread, exploitation of feedback loops to damp dipole oscillations, and controlled longitudinal emittance blow-up. RF phase noise injection has been considered to study if it could complement or substitute the currently used method based on sinusoidal phase modulation.
id oai-inspirehep.net-1639600
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling oai-inspirehep.net-16396002020-03-11T12:26:04Zdoi:10.18429/JACoW-HB2016-MOPR028http://cds.cern.ch/record/2304644engQuartullo, DaniloAlbright, SimonShaposhnikova, ElenaTimko, HelgaCERN PS Booster longitudinal dynamics simulations for the post-LS2 scenarioAccelerators and Storage RingsThe CERN PS Booster is the first synchrotron in the LHC proton injection chain, it currently accelerates particles from 50 MeV to 1.4 GeV kinetic energy. Several upgrades foreseen by the LHC Injectors Upgrade Program will allow the beam to be accelerated from 160 MeV to 2 GeV after Long Shutdown 2 in 2021. The present RF systems will be replaced by a new one, based on Finemet technology. These and other improvements will help to increase the LHC luminosity by a factor of ten. In order to study beam stability in the longitudinal plane simulations have been performed with the CERN BLonD code, using an accurate longitudinal impedance model and a reliable estimation of the longitudinal space charge. Particular attention has been dedicated to the three main features that currently let the beam go stably through the ramp: Double RF operation in bunch-lengthening mode to reduce the transverse space charge tune spread, exploitation of feedback loops to damp dipole oscillations, and controlled longitudinal emittance blow-up. RF phase noise injection has been considered to study if it could complement or substitute the currently used method based on sinusoidal phase modulation.oai:inspirehep.net:16396002016
spellingShingle Accelerators and Storage Rings
Quartullo, Danilo
Albright, Simon
Shaposhnikova, Elena
Timko, Helga
CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title_full CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title_fullStr CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title_full_unstemmed CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title_short CERN PS Booster longitudinal dynamics simulations for the post-LS2 scenario
title_sort cern ps booster longitudinal dynamics simulations for the post-ls2 scenario
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-HB2016-MOPR028
http://cds.cern.ch/record/2304644
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AT albrightsimon cernpsboosterlongitudinaldynamicssimulationsforthepostls2scenario
AT shaposhnikovaelena cernpsboosterlongitudinaldynamicssimulationsforthepostls2scenario
AT timkohelga cernpsboosterlongitudinaldynamicssimulationsforthepostls2scenario