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A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams

A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and beam-induced fluorescence has been developed and demonstrated. The concept presented can be used to measure both the profile of the proton beam in the Large Hadron Collider (LHC) and the concentricity...

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Autores principales: Salehilashkajani, A, Zhang, H D, Ady, M, Chritin, N, Forck, P, Glutting, J, Jones, O R, Kersevan, R, Kumar, N, Lefevre, T, Marriott-Dodington, T, Mazzoni, S, Papazoglou, I, Rossi, A, Schneider, G, Sedlacek, O, Udrea, S, Veness, R, Welsch, C P
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1063/5.0085491
http://cds.cern.ch/record/2812710
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author Salehilashkajani, A
Zhang, H D
Ady, M
Chritin, N
Forck, P
Glutting, J
Jones, O R
Kersevan, R
Kumar, N
Lefevre, T
Marriott-Dodington, T
Mazzoni, S
Papazoglou, I
Rossi, A
Schneider, G
Sedlacek, O
Udrea, S
Veness, R
Welsch, C P
author_facet Salehilashkajani, A
Zhang, H D
Ady, M
Chritin, N
Forck, P
Glutting, J
Jones, O R
Kersevan, R
Kumar, N
Lefevre, T
Marriott-Dodington, T
Mazzoni, S
Papazoglou, I
Rossi, A
Schneider, G
Sedlacek, O
Udrea, S
Veness, R
Welsch, C P
author_sort Salehilashkajani, A
collection CERN
description A minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and beam-induced fluorescence has been developed and demonstrated. The concept presented can be used to measure both the profile of the proton beam in the Large Hadron Collider (LHC) and the concentricity of the electron and the proton beams in the LHC hollow electron lens. In this Letter, the performance of such a monitor for a low energy electron beam is discussed, which paves the way for its wider implementation.
id cern-2812710
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28127102022-06-19T19:55:22Zdoi:10.1063/5.0085491http://cds.cern.ch/record/2812710engSalehilashkajani, AZhang, H DAdy, MChritin, NForck, PGlutting, JJones, O RKersevan, RKumar, NLefevre, TMarriott-Dodington, TMazzoni, SPapazoglou, IRossi, ASchneider, GSedlacek, OUdrea, SVeness, RWelsch, C PA gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beamsDetectors and Experimental TechniquesA minimally invasive transverse beam profile monitor based on supersonic gas curtain technology and beam-induced fluorescence has been developed and demonstrated. The concept presented can be used to measure both the profile of the proton beam in the Large Hadron Collider (LHC) and the concentricity of the electron and the proton beams in the LHC hollow electron lens. In this Letter, the performance of such a monitor for a low energy electron beam is discussed, which paves the way for its wider implementation.oai:cds.cern.ch:28127102022
spellingShingle Detectors and Experimental Techniques
Salehilashkajani, A
Zhang, H D
Ady, M
Chritin, N
Forck, P
Glutting, J
Jones, O R
Kersevan, R
Kumar, N
Lefevre, T
Marriott-Dodington, T
Mazzoni, S
Papazoglou, I
Rossi, A
Schneider, G
Sedlacek, O
Udrea, S
Veness, R
Welsch, C P
A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title_full A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title_fullStr A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title_full_unstemmed A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title_short A gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
title_sort gas curtain beam profile monitor using beam induced fluorescence for high intensity charged particle beams
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1063/5.0085491
http://cds.cern.ch/record/2812710
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