Proton-driven plasma wakefield acceleration: a path to the future of high-energy particle physics

dc.contributor.authorAssmann, R.
dc.contributor.authorBingham, R.
dc.contributor.authorBohl, T.
dc.contributor.authorBracco, C.
dc.contributor.authorButtenschön, B.
dc.contributor.authorButterworth, A.
dc.contributor.authorCaldwell, A.
dc.contributor.authorChattopadhyay, S.
dc.contributor.authorCipiccia, S.
dc.contributor.authorFeldbaumer, E.
dc.contributor.authorFonseca, R. A.
dc.contributor.authorGoddard, B.
dc.contributor.authorGross, M.
dc.contributor.authorGrulke, O.
dc.contributor.authorGschwendtner, E.
dc.contributor.authorHolloway, J.
dc.contributor.authorHuang, C. K.
dc.contributor.authorJaroszynski, D.
dc.contributor.authorJolly, S.
dc.contributor.authorKempkes, P.
dc.contributor.authorLopes, N. C.
dc.contributor.authorLotov, K.
dc.contributor.authorMachacek, J.
dc.contributor.authorMandry, S. R.
dc.contributor.authorMcKenzie, J. W.
dc.contributor.authorMeddahi, M.
dc.contributor.authorMilitsyn, B. L.
dc.contributor.authorMoschuering, N.
dc.contributor.authorMuggli, P.
dc.contributor.authorNajmudin, Z.
dc.contributor.authorNoakes, T. C. Q.
dc.contributor.authorNorreys, P.
dc.contributor.authorÖz, E.
dc.contributor.authorPardons, A.
dc.contributor.authorPetrenko, A.
dc.contributor.authorPukhov, A.
dc.contributor.authorRieger, K.
dc.contributor.authorReimann, O.
dc.contributor.authorRuhl, H.
dc.contributor.authorShaposhnikova, E.
dc.contributor.authorSilva, L. O.
dc.contributor.authorSosedkin, A.
dc.contributor.authorTarkeshian, R.
dc.contributor.authorTrines, R. M. G. M.
dc.contributor.authorTückmantel, T.
dc.contributor.authorVieira, J.
dc.contributor.authorVincke, H.
dc.contributor.authorWing, M.
dc.contributor.authorXia, G.
dc.date.accessioned2014-12-16T15:01:32Z
dc.date.available2014-12-16T15:01:32Z
dc.date.issued2014
dc.date.updated2014-12-16T15:00:02Z
dc.descriptionWOS:000340055300014 (Nº de Acesso Web of Science)
dc.description.abstractNew acceleration technology is mandatory for the future elucidation of fundamental particles and their interactions. A promising approach is to exploit the properties of plasmas. Past research has focused on creating large-amplitude plasma waves by injecting an intense laser pulse or an electron bunch into the plasma. However, the maximum energy gain of electrons accelerated in a single plasma stage is limited by the energy of the driver. Proton bunches are the most promising drivers of wakefields to accelerate electrons to the TeV energy scale in a single stage. An experimental program at CERN—the AWAKE experiment—has been launched to study in detail the important physical processes and to demonstrate the power of proton-driven plasma wakefield acceleration. Here we review the physical principles and some experimental considerations for a future proton-driven plasma wakefield accelerator.por
dc.distributionInternacionalpor
dc.identifier.issn0741-3335por
dc.identifier.urihttps://ciencia.iscte-iul.pt/public/pub/id/17804
dc.identifier.urihttp://hdl.handle.net/10071/8162
dc.journalPlasma Physics and Controlled Fusionpor
dc.language.isoengpor
dc.number8por
dc.pagination084013por
dc.peerreviewedSimpor
dc.publicationstatusPublicadopor
dc.publisherIOP Publishing Ltdpor
dc.relation.publisherversionThe definitive version is available at: http://dx.doi.org/10.1088/0741-3335/56/8/084013por
dc.rightsopen accesspor
dc.subjectProton-driven plasma wakefield accelerationpor
dc.subjectAcceleratorspor
dc.subjectPlasma physicspor
dc.titleProton-driven plasma wakefield acceleration: a path to the future of high-energy particle physicspor
dc.typearticleen_US
dc.volume56por
degois.publication.firstPage084013por
degois.publication.issue8por
degois.publication.titlePlasma Physics and Controlled Fusionpor
dspace.entity.typePublicationen

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