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Design of the AWAKE Run 2c transfer lines using numerical optimizers

The Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. AWAKE Run 1 achieved acceleration of electron beams to 2 GeV and the intention for Run 2 is to build on these results by achi...

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Autores principales: Ramjiawan, Rebecca, Bencini, Vittorio, Doebert, Steffen, Farmer, John, Gschwendtner, Edda, Velotti, Francesco, Verra, Livio, Della Porta, Giovanni Zevi, Burrows, P. N.
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2804326
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author Ramjiawan, Rebecca
Bencini, Vittorio
Doebert, Steffen
Farmer, John
Gschwendtner, Edda
Velotti, Francesco
Verra, Livio
Della Porta, Giovanni Zevi
Burrows, P. N.
author_facet Ramjiawan, Rebecca
Bencini, Vittorio
Doebert, Steffen
Farmer, John
Gschwendtner, Edda
Velotti, Francesco
Verra, Livio
Della Porta, Giovanni Zevi
Burrows, P. N.
author_sort Ramjiawan, Rebecca
collection CERN
description The Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. AWAKE Run 1 achieved acceleration of electron beams to 2 GeV and the intention for Run 2 is to build on these results by achieving acceleration to ~10 GeV with a higher beam quality. As part of the upgrade to Run 2, the existing proton and electron beamlines will be adapted and a second plasma cell and new 150 MeV electron beamline will be added. This new beamline will be required to inject electron bunches with micron-level beam size and stability into the second plasma cell from within the 1 m gap between the two plasma cells. In this paper we describe the techniques used (e.g. numerical optimizers and genetic algorithms) to produce the design of the 150 MeV electron line in order to meet the challenging experimental specifications. Operational techniques are also studied for both electron transfer lines including steering and alignment methods utilising numerical optimizers and beam measurement techniques employing neural networks.
id cern-2804326
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28043262023-01-31T08:10:03Zhttp://cds.cern.ch/record/2804326engRamjiawan, RebeccaBencini, VittorioDoebert, SteffenFarmer, JohnGschwendtner, EddaVelotti, FrancescoVerra, LivioDella Porta, Giovanni ZeviBurrows, P. N.Design of the AWAKE Run 2c transfer lines using numerical optimizersphysics.acc-phAccelerators and Storage RingsThe Advanced Wakefield (AWAKE) Experiment is a proof-of-principle experiment demonstrating the acceleration of electron beams via proton-driven plasma wakefield acceleration. AWAKE Run 1 achieved acceleration of electron beams to 2 GeV and the intention for Run 2 is to build on these results by achieving acceleration to ~10 GeV with a higher beam quality. As part of the upgrade to Run 2, the existing proton and electron beamlines will be adapted and a second plasma cell and new 150 MeV electron beamline will be added. This new beamline will be required to inject electron bunches with micron-level beam size and stability into the second plasma cell from within the 1 m gap between the two plasma cells. In this paper we describe the techniques used (e.g. numerical optimizers and genetic algorithms) to produce the design of the 150 MeV electron line in order to meet the challenging experimental specifications. Operational techniques are also studied for both electron transfer lines including steering and alignment methods utilising numerical optimizers and beam measurement techniques employing neural networks.arXiv:2203.01605oai:cds.cern.ch:28043262022-03-03
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Ramjiawan, Rebecca
Bencini, Vittorio
Doebert, Steffen
Farmer, John
Gschwendtner, Edda
Velotti, Francesco
Verra, Livio
Della Porta, Giovanni Zevi
Burrows, P. N.
Design of the AWAKE Run 2c transfer lines using numerical optimizers
title Design of the AWAKE Run 2c transfer lines using numerical optimizers
title_full Design of the AWAKE Run 2c transfer lines using numerical optimizers
title_fullStr Design of the AWAKE Run 2c transfer lines using numerical optimizers
title_full_unstemmed Design of the AWAKE Run 2c transfer lines using numerical optimizers
title_short Design of the AWAKE Run 2c transfer lines using numerical optimizers
title_sort design of the awake run 2c transfer lines using numerical optimizers
topic physics.acc-ph
Accelerators and Storage Rings
url http://cds.cern.ch/record/2804326
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