CERN Accelerating science

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002750008 003__ SzGeCERN
002750008 005__ 20220413150936.0
002750008 0248_ $$aoai:inspirehep.net:1838504$$pcerncds:CERN:FULLTEXT$$pcerncds:FULLTEXT$$pcerncds:CERN$$qINSPIRE:HEP$$qForCDS
002750008 0247_ $$2DOI$$9Springer$$a10.1140/epjst/e2020-000127-8$$qpublication
002750008 0247_ $$2DOI$$9Springer$$a10.1140/epjst/e2021-100018-5$$qerratum
002750008 035__ $$9http://old.inspirehep.net/oai2d$$aoai:inspirehep.net:1838504$$d2021-01-21T14:17:24Z$$h2021-01-22T05:00:46Z$$mmarcxml
002750008 035__ $$9Inspire$$a1838504
002750008 041__ $$aeng
002750008 100__ $$aAssmann, R W$$iINSPIRE-00331280$$tGRID:grid.7683.a$$uDESY
002750008 245__ $$9Springer$$aEuPRAXIA Conceptual Design Report
002750008 260__ $$c2020
002750008 300__ $$a610 p
002750008 520__ $$9Springer$$aThis report presents the conceptual design of a new European research infrastructure EuPRAXIA. The concept has been established over the last four years in a unique collaboration of 41 laboratories within a Horizon 2020 design study funded by the European Union. EuPRAXIA is the first European project that develops a dedicated particle accelerator research infrastructure based on novel plasma acceleration concepts and laser technology. It focuses on the development of electron accelerators and underlying technologies, their user communities, and the exploitation of existing accelerator infrastructures in Europe. EuPRAXIA has involved, amongst others, the international laser community and industry to build links and bridges with accelerator science — through realising synergies, identifying disruptive ideas, innovating, and fostering knowledge exchange. The Eu-PRAXIA project aims at the construction of an innovative electron accelerator using laser- and electron-beam-driven plasma wakefield acceleration that offers a significant reduction in size and possible savings in cost over current state-of-the-art radiofrequency-based accelerators. The foreseen electron energy range of one to five gigaelectronvolts (GeV) and its performance goals will enable versatile applications in various domains, e.g. as a compact free-electron laser (FEL), compact sources for medical imaging and positron generation, table-top test beams for particle detectors, as well as deeply penetrating X-ray and gamma-ray sources for material testing. EuPRAXIA is designed to be the required stepping stone to possible future plasma-based facilities, such as linear colliders at the high-energy physics (HEP) energy frontier. Consistent with a high-confidence approach, the project includes measures to retire risk by establishing scaled technology demonstrators. This report includes preliminary models for project implementation, cost and schedule that would allow operation of the full Eu-PRAXIA facility within 8—10 years.
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002750008 542__ $$3publication$$dThe Author(s)$$g2020
002750008 542__ $$3erratum$$dEDP Sciences, Springer-Verlag GmbH Germany$$g2021
002750008 65017 $$2SzGeCERN$$aAccelerators and Storage Rings
002750008 690C_ $$aCERN
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002750008 700__ $$aAlexandrova, A S$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aAnania, M P$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aAndreev, N E$$tGRID:grid.435259.c$$tGRID:grid.18763.3b$$uITAE, Moscow$$uMoscow, MIPT$$vMoscow Institute of Physics and Technology, 141701 Dolgoprudny, Russia
002750008 700__ $$aAndriyash, I$$tGRID:grid.13992.30$$uWeizmann Inst.
002750008 700__ $$aArtioli, M$$uENEA, Bologna
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002750008 700__ $$aBarna, I F$$tGRID:grid.419766.b$$uWigner RCP, Budapest
002750008 700__ $$aBartocci, S$$tGRID:grid.11450.31$$uSassari U.
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002750008 700__ $$aBonatto, A$$tGRID:grid.450757.4$$tGRID:grid.5379.8$$uCockcroft Inst. Accel. Sci. Tech.$$uManchester U.$$vUniversity of Manchester, M13 9PL Manchester, UK
002750008 700__ $$aBoulton, L$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
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002750008 700__ $$aCianchi, A$$tGRID:grid.6530.0$$tGRID:grid.470219.9$$uRome U., Tor Vergata$$uINFN, Rome2$$vINFN Sezione di Roma Tor Vergata, 00133 Rome, Italy
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002750008 700__ $$aClarke, J A$$tGRID:grid.450757.4$$tGRID:grid.498189.5$$uCockcroft Inst. Accel. Sci. Tech.$$uDaresbury$$vSTFC Daresbury Laboratory, Sci-Tech Daresbury, Warrington, UK
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002750008 700__ $$aCroia, M$$tGRID:grid.463190.9$$uFrascati
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002750008 700__ $$aDe Nicola, S$$tGRID:grid.470211.1$$uINFN, Naples$$uCNR-SPIN, Naples$$vSPIN-CNR, Complesso Universitario di M.S. Angelo, 80126 Napoli, Italy
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002750008 700__ $$aFedele, R$$tGRID:grid.470211.1$$tGRID:grid.4691.a$$uINFN, Naples$$uNaples U.$$vUniversità di Napoli “Federico II”, 80126 Napoli, Italy
002750008 700__ $$aFerran Pousa, A$$tGRID:grid.7683.a$$tGRID:grid.9026.d$$uDESY$$uHamburg U.$$vUniversität Hamburg, 22761 Hamburg, Germany
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002750008 700__ $$aFiorito, R$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
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002750008 700__ $$aHaefner, C$$tGRID:grid.250008.f$$uLLNL, Livermore
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002750008 700__ $$aHelm, A$$tGRID:grid.9983.b$$uLisbon, CFP
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002750008 700__ $$aHolzer, B J$$tGRID:grid.9132.9$$uCERN
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002750008 700__ $$aHübner, M$$tGRID:grid.450248.f$$uBerlin FBI
002750008 700__ $$aIbison, M$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
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002750008 700__ $$aIrman, A$$tGRID:grid.40602.30$$uHZDR, Dresden
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002750008 700__ $$aJaroszynski, D A$$tGRID:grid.11984.35$$uStrathclyde U.
002750008 700__ $$aJaster-Merz, S$$tGRID:grid.7683.a$$uDESY
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002750008 700__ $$aKaluza, M$$tGRID:grid.450266.3$$uHelmholtz Inst., Jena$$uJena U.$$vInstitut für Optik und Quantenelektronik, 07743 Jena, Germany
002750008 700__ $$aKando, M$$uKyoto U.
002750008 700__ $$aKarger, O S$$tGRID:grid.9026.d$$uHamburg U.
002750008 700__ $$aKarsch, S$$tGRID:grid.5252.0$$uMunich U.
002750008 700__ $$aKhazanov, E$$tGRID:grid.459329.0$$uNizhnii Novgorod, IAP
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002750008 700__ $$aKirwan, G$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
002750008 700__ $$aKitégi, C$$tGRID:grid.426328.9$$uSOLEIL, Saint-Aubin
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002750008 700__ $$aLi, Y$$tGRID:grid.5379.8$$uManchester U.
002750008 700__ $$aLibov, V$$tGRID:grid.9026.d$$uHamburg U.
002750008 700__ $$aLifschitz, A$$tGRID:grid.462947.a$$uPalaiseau, Lab. Opt. Appl.
002750008 700__ $$aLindstrøm, C A$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aLitvinenko, V$$tGRID:grid.202665.5$$tGRID:grid.36425.36$$uBNL, NSLS$$uSUNY, Stony Brook$$vStony Brook University, 11794 Stony Brook, NY, USA
002750008 700__ $$aLu, W$$tGRID:grid.12527.33$$uTsinghua U., Beijing
002750008 700__ $$aLundh, O$$tGRID:grid.4514.4$$uLund U.
002750008 700__ $$aMaier, A R$$tGRID:grid.9026.d$$tGRID:grid.466493.a$$uHamburg U.$$uCFEL, Hamburg$$vCenter for Free Electron Laser Science, 22607 Hamburg, Germany
002750008 700__ $$aMalka, V$$tGRID:grid.13992.30$$uWeizmann Inst.
002750008 700__ $$aManahan, G G$$tGRID:grid.11984.35$$uStrathclyde U.
002750008 700__ $$aMangles, S P D$$tGRID:grid.7445.2$$uImperial Coll., London
002750008 700__ $$aMarcelli, A$$tGRID:grid.463190.9$$uFrascati
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002750008 700__ $$aMazzotta, Z$$tGRID:grid.494537.8$$uAmsterdam U.
002750008 700__ $$aMironov, S$$tGRID:grid.459329.0$$uNizhnii Novgorod, IAP
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002750008 700__ $$aMüller, A  -S$$tGRID:grid.7892.4$$uKIT, Karlsruhe
002750008 700__ $$aMurphy, C D$$tGRID:grid.5685.e$$uYork U., England
002750008 700__ $$aNajmudin, Z$$tGRID:grid.7445.2$$uImperial Coll., London
002750008 700__ $$aNghiem, P A P$$uIRFU, Saclay, DACM
002750008 700__ $$aNguyen, F$$tGRID:grid.5196.b$$uENEA, Frascati
002750008 700__ $$aNiknejadi, P$$tGRID:grid.7683.a$$uDESY
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002750008 700__ $$aPetrillo, V$$tGRID:grid.470206.7$$tGRID:grid.4708.b$$uINFN, Milan$$uMilan U.$$vUniversity of Milan, 20133 Milan, Italy
002750008 700__ $$aPiersanti, L$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aPocsai, M A$$tGRID:grid.419766.b$$tGRID:grid.9679.1$$uWigner RCP, Budapest$$uPecs U.$$vUniversity of Pécs, Institute of Physics, H-7624 Pécs, Hungary
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002750008 700__ $$aRotundo, U$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aRoussel, E$$tGRID:grid.503422.2$$uPhLAM, Villeneuve d'Ascq
002750008 700__ $$aSabbatini, L$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aSantangelo, P$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aSarri, G$$tGRID:grid.4777.3$$uQueen's U., Belfast
002750008 700__ $$aSchaper, L$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aScherkl, P$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
002750008 700__ $$aSchramm, U$$tGRID:grid.40602.30$$uHZDR, Dresden
002750008 700__ $$aSchroeder, C B$$tGRID:grid.184769.5$$uLBL, Berkeley
002750008 700__ $$aScifo, J$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aSerafini, L$$tGRID:grid.470206.7$$uINFN, Milan
002750008 700__ $$aSharma, G$$tGRID:grid.18785.33$$uDiamond Light Source
002750008 700__ $$aSheng, Z M$$tGRID:grid.11984.35$$tGRID:grid.16821.3c$$uStrathclyde U.$$uShanghai Jiao Tong U.$$vShanghai Jiao Tong University, 200240 Shanghai, P.R. China
002750008 700__ $$aShpakov, V$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aSiders, C W$$tGRID:grid.250008.f$$uLLNL, Livermore
002750008 700__ $$aSilva, L O$$tGRID:grid.9983.b$$uLisbon, CFP
002750008 700__ $$aSilva, T$$tGRID:grid.9983.b$$uLisbon, CFP
002750008 700__ $$aSimon, C$$uIRFU, Saclay, DACM
002750008 700__ $$aSimon-Boisson, C
002750008 700__ $$aSinha, U$$tGRID:grid.9983.b$$uLisbon, CFP
002750008 700__ $$aSistrunk, E$$tGRID:grid.250008.f$$uLLNL, Livermore
002750008 700__ $$aSpecka, A$$tGRID:grid.4444.0$$uEcole Polytechnique
002750008 700__ $$aSpinka, T M$$tGRID:grid.250008.f$$uLLNL, Livermore
002750008 700__ $$aStecchi, A$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aStella, A$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aStellato, F$$tGRID:grid.6530.0$$tGRID:grid.470219.9$$uRome U., Tor Vergata$$uINFN, Rome2$$vINFN Sezione di Roma Tor Vergata, 00133 Rome, Italy
002750008 700__ $$aStreeter, M J V$$tGRID:grid.7445.2$$uImperial Coll., London
002750008 700__ $$aSutherland, A$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
002750008 700__ $$aSvystun, E N$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aSymes, D$$tGRID:grid.76978.37$$uRutherford
002750008 700__ $$aSzwaj, C$$tGRID:grid.503422.2$$uPhLAM, Villeneuve d'Ascq
002750008 700__ $$aTauscher, G E$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aTerzani, D$$tGRID:grid.470211.1$$tGRID:grid.4691.a$$uINFN, Naples$$uNaples U.$$vUniversità di Napoli “Federico II”, 80126 Napoli, Italy
002750008 700__ $$aToci, G$$tGRID:grid.425378.f$$uCNR, INO, Sesto Fiorentino
002750008 700__ $$aTomassini, P$$tGRID:grid.425378.f$$uCNR, INO, Pisa
002750008 700__ $$aTorres, R$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aUllmann, D$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
002750008 700__ $$aVaccarezza, C$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aValléau, M$$tGRID:grid.426328.9$$uSOLEIL, Saint-Aubin
002750008 700__ $$aVannini, M$$tGRID:grid.425378.f$$uCNR, INO, Sesto Fiorentino
002750008 700__ $$aVannozzi, A$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aVescovi, S$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aVieira, J M$$tGRID:grid.9983.b$$uLisbon, CFP
002750008 700__ $$aVilla, F$$tGRID:grid.463190.9$$uFrascati
002750008 700__ $$aWahlström, C  -G$$tGRID:grid.4514.4$$uLund U.
002750008 700__ $$aWalczak, R$$tGRID:grid.4991.5$$uOxford U.
002750008 700__ $$aWalker, P A$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aWang, K$$tGRID:grid.5842.b$$uOrsay, LAL
002750008 700__ $$aWelsch, A$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aWelsch, C P$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aWeng, S M$$tGRID:grid.16821.3c$$uShanghai Jiao Tong U.
002750008 700__ $$aWiggins, S M$$tGRID:grid.450757.4$$tGRID:grid.11984.35$$uCockcroft Inst. Accel. Sci. Tech.$$uStrathclyde U.$$vSUPA, Department of Physics, University of Strathclyde, G4 0NG Glasgow, UK
002750008 700__ $$aWolfenden, J$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aXia, G$$tGRID:grid.450757.4$$tGRID:grid.5379.8$$uCockcroft Inst. Accel. Sci. Tech.$$uManchester U.$$vUniversity of Manchester, M13 9PL Manchester, UK
002750008 700__ $$aYabashi, M$$uXFEL, RIKEN
002750008 700__ $$aZhang, H$$tGRID:grid.450757.4$$tGRID:grid.10025.36$$uCockcroft Inst. Accel. Sci. Tech.$$uU. Liverpool (main)$$vUniversity of Liverpool, L69 7ZE Liverpool, UK
002750008 700__ $$aZhao, Y$$tGRID:grid.450757.4$$tGRID:grid.5379.8$$uCockcroft Inst. Accel. Sci. Tech.$$uManchester U.$$vUniversity of Manchester, M13 9PL Manchester, UK
002750008 700__ $$aZhu, J$$tGRID:grid.7683.a$$uDESY
002750008 700__ $$aZigler, A$$tGRID:grid.9619.7$$uHebrew U.
002750008 773__ $$c3675-4284$$mpublication$$n24$$pEur. Phys. J. Spec. Top.$$v229$$y2020
002750008 773__ $$c11-31$$merratum$$pEur. Phys. J. Spec. Top.$$v229$$y2020
002750008 8564_ $$82274236$$s68980954$$uhttp://cds.cern.ch/record/2750008/files/10.1140_epjst_e2020-000127-8.pdf$$yFulltext from Publisher
002750008 960__ $$a13
002750008 980__ $$aARTICLE