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Physics of the AWAKE Project

The goal of the AWKAKE collaboration is the study of plasma wakefields driven by proton (p⁺) bunches through experiments, simulations and theory. Proton bunches are interesting wakefield drivers because they can be ultra-relativistic (TeVs/p⁺) and carry large amounts of energy (>kJ). It was demon...

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Detalles Bibliográficos
Autores principales: Muggli, Patric, Öz, Erdem, Tarkeshian, Roxana, Bracco, Chiara, Gschwendtner, Edda, Pardons, Ans, Caldwell, Allen, Reimann, Olaf, Lotov, Konstantin, Pukhov, Alexander, Vieira, Jorge, Wing, Matthew
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/2010971
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author Muggli, Patric
Öz, Erdem
Tarkeshian, Roxana
Bracco, Chiara
Gschwendtner, Edda
Pardons, Ans
Caldwell, Allen
Reimann, Olaf
Lotov, Konstantin
Pukhov, Alexander
Vieira, Jorge
Wing, Matthew
author_facet Muggli, Patric
Öz, Erdem
Tarkeshian, Roxana
Bracco, Chiara
Gschwendtner, Edda
Pardons, Ans
Caldwell, Allen
Reimann, Olaf
Lotov, Konstantin
Pukhov, Alexander
Vieira, Jorge
Wing, Matthew
author_sort Muggli, Patric
collection CERN
description The goal of the AWKAKE collaboration is the study of plasma wakefields driven by proton (p⁺) bunches through experiments, simulations and theory. Proton bunches are interesting wakefield drivers because they can be ultra-relativistic (TeVs/p⁺) and carry large amounts of energy (>kJ). It was demonstrated in simulations* that acceleration of an electron (e-) bunch from 10GeV to >500GeV can be achieved in ~500m of plasma driven by a 1TeV, 100micron-long, bunch with 10¹¹ p+. Such short p⁺ bunches do not exist today. It was suggested** that a p⁺ bunch long compared to the plasma period can transversely self-modulate and resonantly drive wakefields to large amplitudes (~GV/m). Initial experiments based on self-modulation instability (SMI) will use single 12cm-long CERN SPS bunches with 1-3·10¹¹, 450GeV p⁺ to study physics of SMI. With a plasma density of 7·10¹⁴/cc the plasma wave and modulation period is 1.3mm. The SMI saturates after ~3m with amplitude in the GV/m range. Later a low energy (~10MeV) witness e⁻ bunch will be injected at the SMI saturation point. Energy gain over ~7m of plasma can reach the GeV level. Translation from physics to experimental plan and setup will be presented.
id oai-inspirehep.net-1337033
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling oai-inspirehep.net-13370332022-08-17T13:32:33Zhttp://cds.cern.ch/record/2010971engMuggli, PatricÖz, ErdemTarkeshian, RoxanaBracco, ChiaraGschwendtner, EddaPardons, AnsCaldwell, AllenReimann, OlafLotov, KonstantinPukhov, AlexanderVieira, JorgeWing, MatthewPhysics of the AWAKE ProjectAccelerators and Storage RingsThe goal of the AWKAKE collaboration is the study of plasma wakefields driven by proton (p⁺) bunches through experiments, simulations and theory. Proton bunches are interesting wakefield drivers because they can be ultra-relativistic (TeVs/p⁺) and carry large amounts of energy (>kJ). It was demonstrated in simulations* that acceleration of an electron (e-) bunch from 10GeV to >500GeV can be achieved in ~500m of plasma driven by a 1TeV, 100micron-long, bunch with 10¹¹ p+. Such short p⁺ bunches do not exist today. It was suggested** that a p⁺ bunch long compared to the plasma period can transversely self-modulate and resonantly drive wakefields to large amplitudes (~GV/m). Initial experiments based on self-modulation instability (SMI) will use single 12cm-long CERN SPS bunches with 1-3·10¹¹, 450GeV p⁺ to study physics of SMI. With a plasma density of 7·10¹⁴/cc the plasma wave and modulation period is 1.3mm. The SMI saturates after ~3m with amplitude in the GV/m range. Later a low energy (~10MeV) witness e⁻ bunch will be injected at the SMI saturation point. Energy gain over ~7m of plasma can reach the GeV level. Translation from physics to experimental plan and setup will be presented.oai:inspirehep.net:13370332013
spellingShingle Accelerators and Storage Rings
Muggli, Patric
Öz, Erdem
Tarkeshian, Roxana
Bracco, Chiara
Gschwendtner, Edda
Pardons, Ans
Caldwell, Allen
Reimann, Olaf
Lotov, Konstantin
Pukhov, Alexander
Vieira, Jorge
Wing, Matthew
Physics of the AWAKE Project
title Physics of the AWAKE Project
title_full Physics of the AWAKE Project
title_fullStr Physics of the AWAKE Project
title_full_unstemmed Physics of the AWAKE Project
title_short Physics of the AWAKE Project
title_sort physics of the awake project
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2010971
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AT ozerdem physicsoftheawakeproject
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AT pardonsans physicsoftheawakeproject
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AT reimannolaf physicsoftheawakeproject
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