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Absolute calibration of Fujifilm BAS-TR image plate response to laser driven protons up to 40 MeV

  • P. Martin
  • , H. Ahmed
  • , D. Doria
  • , A. Alejo
  • , R. Clarke
  • , S. Ferguson
  • , J. Fernández-Tobias
  • , R. R. Freeman
  • , J. Fuchs
  • , A. Green
  • , J. S. Green
  • , D. Gwynne
  • , F. Hanton
  • , J. Jarrett
  • , D. Jung
  • , K. F. Kakolee
  • , A. G. Krygier
  • , C. L.S. Lewis
  • , A. McIlvenny
  • , P. McKenna
  • J. T. Morrison, Z. Najmudin, K. Naughton, G. Nersisyan, P. Norreys, M. Notley, M. Roth, J. A. Ruiz, C. Scullion, M. Zepf, S. Zhai, M. Borghesi, S. Kar
  • Queen's University of Belfast
  • Central Laser Facility
  • Horia Hulubei National Institute of Physics and Nuclear Engineering
  • Universidade de Santiago de Compostela
  • Instituto de Fusión Nuclear
  • The Ohio State University
  • University of Strathclyde
  • Jagannath University, Bangladesh
  • Colorado State University
  • Imperial College London
  • University of Oxford
  • Technische Universität Darmstadt
  • Helmholtz Institut Jena
  • Friedrich-Schiller University
  • GSI Helmholtzzentrum fur Schwerionenforschung
  • Shanghai Normal University

Research output: Contribution to journalArticlepeer-review

Abstract

Image plates (IPs) are a popular detector in the field of laser driven ion acceleration, owing to their high dynamic range and reusability. An absolute calibration of these detectors to laser-driven protons in the routinely produced tens of MeV energy range is, therefore, essential. In this paper, the response of Fujifilm BAS-TR IPs to 1-40 MeV protons is calibrated by employing the detectors in high resolution Thomson parabola spectrometers in conjunction with a CR-39 nuclear track detector to determine absolute proton numbers. While CR-39 was placed in front of the image plate for lower energy protons, it was placed behind the image plate for energies above 10 MeV using suitable metal filters sandwiched between the image plate and CR-39 to select specific energies. The measured response agrees well with previously reported calibrations as well as standard models of IP response, providing, for the first time, an absolute calibration over a large range of proton energies of relevance to current experiments.

Original languageEnglish
Article number053303
JournalReview of Scientific Instruments
Volume93
Issue number5
DOIs
Publication statusPublished - 1 May 2022

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