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A magnetic spectrometer to measure electron bunches accelerated at AWAKE

A magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated by proton bunches in plasma. AWAKE is a proof-of-principle experiment for proton-driven plasma wakefield acceleration, u...

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Detalles Bibliográficos
Autores principales: Bauche, J., Biskup, B., Cascella, M., Chappell, J., Chritin, N., Cooke, D., Deacon, L., Deliege, Q., Gorgisyan, I., Hansen, J., Jolly, S., Keeble, F., La Penna, P., Mazzoni, S., Medina Godoy, D., Petrenko, A., Quattri, M., Schneider, T., Sherwood, P., Vorozhtsov, A., Wing, M.
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2019.05.067
http://cds.cern.ch/record/2659629
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author Bauche, J.
Biskup, B.
Cascella, M.
Chappell, J.
Chritin, N.
Cooke, D.
Deacon, L.
Deliege, Q.
Gorgisyan, I.
Hansen, J.
Jolly, S.
Keeble, F.
La Penna, P.
Mazzoni, S.
Medina Godoy, D.
Petrenko, A.
Quattri, M.
Schneider, T.
Sherwood, P.
Vorozhtsov, A.
Wing, M.
author_facet Bauche, J.
Biskup, B.
Cascella, M.
Chappell, J.
Chritin, N.
Cooke, D.
Deacon, L.
Deliege, Q.
Gorgisyan, I.
Hansen, J.
Jolly, S.
Keeble, F.
La Penna, P.
Mazzoni, S.
Medina Godoy, D.
Petrenko, A.
Quattri, M.
Schneider, T.
Sherwood, P.
Vorozhtsov, A.
Wing, M.
author_sort Bauche, J.
collection CERN
description A magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated by proton bunches in plasma. AWAKE is a proof-of-principle experiment for proton-driven plasma wakefield acceleration, using proton bunches from the SPS. Electron bunches are accelerated to O (1 GeV) in a rubidium plasma cell and then separated from the proton bunches via a dipole magnet. The dipole magnet also induces an energy-dependent spatial horizontal spread on the electron bunch which then impacts on a scintillator screen. The scintillation photons emitted are transported via three highly-reflective mirrors to an intensified CCD camera, housed in a dark room, which passes the images to the CERN controls system for storage and further analysis. Given the known magnetic field and determination of the efficiencies of the system, the spatial spread of the scintillation photons can be converted to an electron energy distribution. A lamp attached on a rail in front of the scintillator is used to calibrate the optical system, with calibration of the scintillator screen’s response to electrons carried out at the CLEAR facility at CERN. In this article, the design of the AWAKE spectrometer is presented, along with the calibrations carried out and expected performance such that the energy distribution of accelerated electrons can be measured.
id cern-2659629
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26596292022-03-04T03:14:32Zdoi:10.1016/j.nima.2019.05.067http://cds.cern.ch/record/2659629engBauche, J.Biskup, B.Cascella, M.Chappell, J.Chritin, N.Cooke, D.Deacon, L.Deliege, Q.Gorgisyan, I.Hansen, J.Jolly, S.Keeble, F.La Penna, P.Mazzoni, S.Medina Godoy, D.Petrenko, A.Quattri, M.Schneider, T.Sherwood, P.Vorozhtsov, A.Wing, M.A magnetic spectrometer to measure electron bunches accelerated at AWAKEphysics.plasm-phOther Fields of Physicsphysics.acc-phAccelerators and Storage Ringshep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesA magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated by proton bunches in plasma. AWAKE is a proof-of-principle experiment for proton-driven plasma wakefield acceleration, using proton bunches from the SPS. Electron bunches are accelerated to O (1 GeV) in a rubidium plasma cell and then separated from the proton bunches via a dipole magnet. The dipole magnet also induces an energy-dependent spatial horizontal spread on the electron bunch which then impacts on a scintillator screen. The scintillation photons emitted are transported via three highly-reflective mirrors to an intensified CCD camera, housed in a dark room, which passes the images to the CERN controls system for storage and further analysis. Given the known magnetic field and determination of the efficiencies of the system, the spatial spread of the scintillation photons can be converted to an electron energy distribution. A lamp attached on a rail in front of the scintillator is used to calibrate the optical system, with calibration of the scintillator screen’s response to electrons carried out at the CLEAR facility at CERN. In this article, the design of the AWAKE spectrometer is presented, along with the calibrations carried out and expected performance such that the energy distribution of accelerated electrons can be measured.A magnetic spectrometer has been developed for the AWAKE experiment at CERN in order to measure the energy distribution of bunches of electrons accelerated in wakefields generated by proton bunches in plasma. AWAKE is a proof-of-principle experiment for proton-driven plasma wakefield acceleration, using proton bunches from the SPS. Electron bunches are accelerated to $\mathcal{O}$(1 GeV) in a rubidium plasma cell and then separated from the proton bunches via a dipole magnet. The dipole magnet also induces an energy-dependent spatial horizontal spread on the electron bunch which then impacts on a scintillator screen. The scintillation photons emitted are transported via three highly-reflective mirrors to an intensified CCD camera, housed in a dark room, which passes the images to the CERN controls system for storage and further analysis. Given the known magnetic field and determination of the efficiencies of the system, the spatial spread of the scintillation photons can be converted to an electron energy distribution. A lamp attached on a rail in front of the scintillator is used to calibrate the optical system, with calibration of the scintillator screen's response to electrons carried out at the CLEAR facility at CERN. In this article, the design of the AWAKE spectrometer is presented, along with the calibrations carried out and expected performance such that the energy distribution of accelerated electrons can be measured.arXiv:1902.05752oai:cds.cern.ch:26596292019-02-15
spellingShingle physics.plasm-ph
Other Fields of Physics
physics.acc-ph
Accelerators and Storage Rings
hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Bauche, J.
Biskup, B.
Cascella, M.
Chappell, J.
Chritin, N.
Cooke, D.
Deacon, L.
Deliege, Q.
Gorgisyan, I.
Hansen, J.
Jolly, S.
Keeble, F.
La Penna, P.
Mazzoni, S.
Medina Godoy, D.
Petrenko, A.
Quattri, M.
Schneider, T.
Sherwood, P.
Vorozhtsov, A.
Wing, M.
A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title_full A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title_fullStr A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title_full_unstemmed A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title_short A magnetic spectrometer to measure electron bunches accelerated at AWAKE
title_sort magnetic spectrometer to measure electron bunches accelerated at awake
topic physics.plasm-ph
Other Fields of Physics
physics.acc-ph
Accelerators and Storage Rings
hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2019.05.067
http://cds.cern.ch/record/2659629
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