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EuPRAXIA - A compact, cost-efficient particle and radiation source

  • M. K. Weikum
  • , T. Akhter
  • , P. D. Alesini
  • , A. S. Alexandrova
  • , M. P. Anania
  • , N. E. Andreev
  • , I. Andriyash
  • , A. Aschikhin
  • , R. W. Assmann
  • , T. Audet
  • , A. Bacci
  • , I. F. Barna
  • , A. Beaton
  • , A. Beck
  • , A. Beluze
  • , A. Bernhard
  • , S. Bielawski
  • , F. G. Bisesto
  • , F. Brandi
  • , O. Bringer
  • R. Brinkmann, E. Bründermann, M. Büscher, M. Bussmann, G. C. Bussolino, A. Chance, J. C. Chanteloup, M. Chen, E. Chiadroni, A. Cianchi, J. Clarke, J. Cole, M. E. Couprie, M. Croia, B. Cros, P. Crump, G. Dattoli, N. Delerue, O. Delferriere, P. Delinikolas, S. De Nicola, J. Dias, U. Dorda, R. Fedele, A. Ferran Pousa, M. Ferrario, F. Filippi, J. Fils, G. Fiore, R. A. Fonseca, M. Galimberti, A. Gallo, D. Garzella, P. Gastinel, D. Giove, A. Giribono, L. A. Gizzi, F. J. Grüner, A. F. Habib, T. Heinemann, B. Hidding, B. J. Holzer, S. M. Hooker, T. Hosokai, M. Hübner, A. Irman, F. Jafarinia, D. A. Jaroszynski, S. Jaster-Merz, C. Joshi, M. C. Kaluza, M. Kando, O. S. Karger, S. Karsch, E. Khazanov, D. Khikhlukha, A. Knetsch, D. Kocon, P. Koester, O. Kononenko, G. Korn, I. Kostyukov, K. Kruchinin, L. Labate, C. Lechner, W. P. Leemans, A. Lehrach, F. Y. Li, X. Li, V. Libov, A. Lifschitz, V. Litvinenko, W. Lu, O. Lundh, A. R. Maier, V. Malka, G. G. Manahan, S. P.D. Mangles, B. Marchetti, A. Marocchino, A. Martinez De La Ossa, J. L. Martins, P. Mason, F. Massimo, F. Mathieu, G. Maynard, Z. Mazzotta, T. J. Mehrling, A. Y. Molodozhentsev, A. Mostacci, A. S. Müller, C. D. Murphy, Z. Najmudin, P. A.P. Nghiem, F. Nguyen, P. Niknejadi, J. Osterhoff, D. Papadopoulos, B. Patrizi, V. Petrillo, M. A. Pocsai, K. Poder, R. Pompili, L. Pribyl, D. Pugacheva, S. Romeo, P. P. Rajeev, M. Rossetti Conti, A. R. Rossi, R. Rossmanith, E. Roussel, A. A. Sahai, G. Sarri, L. Schaper, P. Scherkl, U. Schramm, C. B. Schroeder, J. Schwindling, J. Scifo, L. Serafini, Z. M. Sheng, L. O. Silva, T. Silva, C. Simon, U. Sinha, A. Specka, M. J.V. Streeter, E. N. Svystun, D. Symes, C. Szwaj, G. Tauscher, D. Terzani, N. Thompson, G. Toci, P. Tomassini, R. Torres, D. Ullmann, C. Vaccarezza, M. Vannini, J. M. Vieira, F. Villa, C. G. Wahlström, R. Walczak, P. A. Walker, K. Wang, C. P. Welsch, J. Wolfenden, G. Xia, M. Yabashi, L. Yu, J. Zhu, A. Zigler
  • German Electron Synchrotron
  • National Institute for Nuclear Physics
  • Cockcroft Institute
  • University of Liverpool
  • JIHT of RAS
  • Moscow Institute of Physics and Technology
  • Synchrotron SOLEIL
  • Université Paris-Saclay
  • Wigner Research Centre for Physics
  • University of Strathclyde
  • Laboratoire Leprince-Ringuet
  • Université Paris-Saclay
  • Commissariat à l’énergie atomique et aux énergies alternatives
  • Karlsruhe Institute of Technology
  • Université de Lille
  • National Research Council of Italy
  • Jülich Research Centre
  • Helmholtz-Zentrum Dresden-Rossendorf
  • Shanghai Jiao Tong University
  • University of Rome Tor Vergata
  • Daresbury Laboratory
  • Imperial College London
  • Ferdinand-Braun-Institut, Leibniz-Institut für Höchstfrequenztechnik
  • Agenzia nazionale per le nuove tecnologie, l'energia e lo sviluppo economico sostenibile
  • IN2P3/CNRS
  • University of Lisbon
  • University of Naples Federico II
  • University of Hamburg
  • GSI Helmholtz Centre for Heavy Ion Research
  • Rutherford Appleton Laboratory
  • Center for Free Electron Laser Science
  • CERN
  • University of Oxford
  • The University of Osaka
  • University of California at Los Angeles
  • Helmholtz-Institute Jena
  • Institut für Optik und Quantenelektronik
  • National Institutes for Quantum Science and Technology
  • Ludwig Maximilian University of Munich
  • Russian Academy of Sciences
  • ELI-Beamlines
  • Institut Polytechnique de Paris
  • Tsinghua University
  • Lund University
  • Lawrence Berkeley National Laboratory
  • University of Rome La Sapienza
  • University of York
  • University of Milan
  • University of Pecs
  • Queen's University Belfast
  • University of Manchester
  • RIKEN
  • Hebrew University of Jerusalem

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

12 Scopus citations

Abstract

Plasma accelerators present one of the most suitable candidates for the development of more compact particle acceleration technologies, yet they still lag behind radiofrequency (RF)-based devices when it comes to beam quality, control, stability and power efficiency. The Horizon 2020-funded project EuPRAXIA ("European Plasma Research Accelerator with eXcellence In Applications") aims to overcome the first three of these hurdles by developing a conceptual design for a first international user facility based on plasma acceleration. In this paper we report on the main features, simulation studies and potential applications of this future research infrastructure.

Original languageEnglish
Title of host publication25th International Conference on the Application of Accelerators in Research and Industry, CAARI 2018
PublisherAmerican Institute of Physics Inc.
ISBN (Electronic)9780735419056
DOIs
StatePublished - Oct 2 2019
Event25th International Conference on the Application of Accelerators in Research and Industry, CAARI 2018 - Grapevine, United States
Duration: Aug 12 2018Aug 17 2018

Publication series

NameAIP Conference Proceedings
Volume2160
ISSN (Print)0094-243X
ISSN (Electronic)1551-7616

Conference

Conference25th International Conference on the Application of Accelerators in Research and Industry, CAARI 2018
Country/TerritoryUnited States
CityGrapevine
Period08/12/1808/17/18

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