Abstract <p>This work examines experiments at <i>E</i><sub>γ</sub> ≈ 1–4 MeV using precision γ-sources based on collimated backward Compton scattering of laser radiation on accelerated electron beams. For one operational and two projected γ-sources with tightly controlled parameters, we discuss the achievable parameter ranges, γ-beam monitoring methods, and the potential for experiments on total nuclear photoabsorption using the transmission technique, nuclear resonance fluorescence, and γ-scattering that populates metastable nuclear states.</p>

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Possible Photonuclear Experiments at Eγ ~ 1–4 MeV on γ-Sources of the Backward Compton Scattering of Laser Radiation on Accelerated Electron Beams

  • S. S. Belyshev,
  • V. V. Varlamov,
  • L. Z. Dzhilavyan,
  • A. A. Kuznetsov,
  • A. M. Lapik,
  • A. L. Polonski,
  • A. V. Rusakov,
  • V. I. Shvedunov

摘要

Abstract

This work examines experiments at Eγ ≈ 1–4 MeV using precision γ-sources based on collimated backward Compton scattering of laser radiation on accelerated electron beams. For one operational and two projected γ-sources with tightly controlled parameters, we discuss the achievable parameter ranges, γ-beam monitoring methods, and the potential for experiments on total nuclear photoabsorption using the transmission technique, nuclear resonance fluorescence, and γ-scattering that populates metastable nuclear states.