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Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation

Transverse emittance measurements with wire scanners have been extensively studied across the accelerator complex at CERN due to their important role in characterizing the beams and their complicated modelling. In recent years, this topic has been of particular interest for the LHC Injectors Upgrade...

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Autores principales: Santamaría García, Andrea, Antoniou, Fanouria, Bartosik, Hannes, Briz Monago, Jose, Di Giovanni, Gian Piero, Guerrero Ollacarizqueta, Ana, Hunt, James, Mikulec, Bettina, Roncarolo, Federico, Senes, Eugenio, Vlachoudis, Vasilis
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2019-MOPTS101
http://cds.cern.ch/record/2694241
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author Santamaría García, Andrea
Antoniou, Fanouria
Bartosik, Hannes
Briz Monago, Jose
Di Giovanni, Gian Piero
Guerrero Ollacarizqueta, Ana
Hunt, James
Mikulec, Bettina
Roncarolo, Federico
Senes, Eugenio
Vlachoudis, Vasilis
author_facet Santamaría García, Andrea
Antoniou, Fanouria
Bartosik, Hannes
Briz Monago, Jose
Di Giovanni, Gian Piero
Guerrero Ollacarizqueta, Ana
Hunt, James
Mikulec, Bettina
Roncarolo, Federico
Senes, Eugenio
Vlachoudis, Vasilis
author_sort Santamaría García, Andrea
collection CERN
description Transverse emittance measurements with wire scanners have been extensively studied across the accelerator complex at CERN due to their important role in characterizing the beams and their complicated modelling. In recent years, this topic has been of particular interest for the LHC Injectors Upgrade (LIU) project, where a tight transverse emittance blow-up budget between the Proton Synchrotron Booster (PSB) and the Proton Synchrotron (PS) is imposed to ensure the required beam brightness for the High Luminosity LHC (HL-LHC). In order to maintain a high brightness beam, any source of emittance blow-up along the PSB cycle needs to be identified and mitigated. While wire scanners have been mostly used at extraction energy in the PSB, they can also operate along the energy cycle. The scattering of the protons with the wire increases considerably at lower energies, leading to an overestimation of the beam emittance. In this proceeding we present the most recent studies, focusing on precisely quantifying the blow-up created by the flying wire with measurements in an optimized set-up and compared to $\texttt{FLUKA}$ simulations.
id oai-inspirehep.net-1745022
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling oai-inspirehep.net-17450222020-09-28T09:50:23Zdoi:10.18429/JACoW-IPAC2019-MOPTS101http://cds.cern.ch/record/2694241engSantamaría García, AndreaAntoniou, FanouriaBartosik, HannesBriz Monago, JoseDi Giovanni, Gian PieroGuerrero Ollacarizqueta, AnaHunt, JamesMikulec, BettinaRoncarolo, FedericoSenes, EugenioVlachoudis, VasilisStudy of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operationAccelerators and Storage RingsTransverse emittance measurements with wire scanners have been extensively studied across the accelerator complex at CERN due to their important role in characterizing the beams and their complicated modelling. In recent years, this topic has been of particular interest for the LHC Injectors Upgrade (LIU) project, where a tight transverse emittance blow-up budget between the Proton Synchrotron Booster (PSB) and the Proton Synchrotron (PS) is imposed to ensure the required beam brightness for the High Luminosity LHC (HL-LHC). In order to maintain a high brightness beam, any source of emittance blow-up along the PSB cycle needs to be identified and mitigated. While wire scanners have been mostly used at extraction energy in the PSB, they can also operate along the energy cycle. The scattering of the protons with the wire increases considerably at lower energies, leading to an overestimation of the beam emittance. In this proceeding we present the most recent studies, focusing on precisely quantifying the blow-up created by the flying wire with measurements in an optimized set-up and compared to $\texttt{FLUKA}$ simulations.CERN-ACC-2019-092oai:inspirehep.net:17450222019
spellingShingle Accelerators and Storage Rings
Santamaría García, Andrea
Antoniou, Fanouria
Bartosik, Hannes
Briz Monago, Jose
Di Giovanni, Gian Piero
Guerrero Ollacarizqueta, Ana
Hunt, James
Mikulec, Bettina
Roncarolo, Federico
Senes, Eugenio
Vlachoudis, Vasilis
Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title_full Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title_fullStr Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title_full_unstemmed Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title_short Study of the transverse emittance blow-up along the Proton Synchrotron Booster cycle during wire scanner operation
title_sort study of the transverse emittance blow-up along the proton synchrotron booster cycle during wire scanner operation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2019-MOPTS101
http://cds.cern.ch/record/2694241
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