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Wakefield generation in hydrogen and lithium plasmas at FACET-II: Diagnostics and first beam-plasma interaction results

  • D. Storey
  • , C. Zhang
  • , P. San Miguel Claveria
  • , G. J. Cao
  • , E. Adli
  • , L. Alsberg
  • , R. Ariniello
  • , C. Clarke
  • , S. Corde
  • , T. N. Dalichaouch
  • , C. E. Doss
  • , H. Ekerfelt
  • , C. Emma
  • , E. Gerstmayr
  • , S. Gessner
  • , M. Gilljohann
  • , C. Hast
  • , A. Knetsch
  • , V. Lee
  • , M. Litos
  • R. Loney, K. A. Marsh, A. Matheron, W. B. Mori, Z. Nie, B. O'Shea, M. Parker, G. White, G. Yocky, V. Zakharova, M. J. Hogan, C. Joshi
  • Stanford Linear Accelerator Center
  • University of California, Los Angeles
  • Laboratory d'Optique Appliquée, ENSTA, CNRS-École Polytechnique
  • University of Oslo
  • University of Colorado Boulder
  • Stanford University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Plasma wakefield acceleration provides ultrahigh acceleration gradients of tens of GeV/m, providing a novel path toward efficient, compact, TeV-scale linear colliders, and high brightness free electron lasers. Critical to the success of these applications is demonstrating simultaneously high gradient acceleration, high energy transfer efficiency, and preservation of emittance, charge, and energy spread. Experiments at the FACET-II National User Facility at SLAC National Accelerator Laboratory aim to achieve all of these milestones in a single-stage plasma wakefield accelerator, providing a 10 GeV energy gain in a <1 m plasma with high energy transfer efficiency. Such a demonstration depends critically on diagnostics able to measure emittance with mm mrad accuracy, energy spectra to determine both percent level energy spread, and broadband energy gain and loss, incoming longitudinal phase space, and matching dynamics. This paper discusses the experimental setup at FACET-II, including the incoming beam parameters from the FACET-II linac, plasma sources, and diagnostics developed to meet this challenge. Initial progress on the generation of beam ionized wakes in meter-scale hydrogen gas is discussed as well as commissioning of the plasma sources and diagnostics.

langue originaleAnglais
Numéro d'article051302
journalPhysical Review Accelerators and Beams
Volume27
Numéro de publication5
Les DOIs
étatPublié - 1 mai 2024

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