Physical Review Accelerators and Beams (Jul 2024)

Mitigation of the microbunching instability through transverse Landau damping

  • A. D. Brynes,
  • G. Perosa,
  • C.-Y. Tsai,
  • E. Allaria,
  • L. Badano,
  • G. De Ninno,
  • E. Ferrari,
  • D. Garzella,
  • L. Giannessi,
  • G. Penco,
  • P. Rebernik Ribič,
  • E. Roussel,
  • S. Spampinati,
  • C. Spezzani,
  • M. Trovò,
  • M. Veronese,
  • S. Di Mitri

DOI
https://doi.org/10.1103/PhysRevAccelBeams.27.074402
Journal volume & issue
Vol. 27, no. 7
p. 074402

Abstract

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The microbunching instability has been a long-standing issue for high-brightness free-electron lasers (FELs) and is a significant showstopper to achieve full longitudinal coherence in the x-ray regime. This paper reports the first experimental demonstration of microbunching instability mitigation through transverse Landau damping, based on linear optics control in a dispersive region. Analytical predictions for the microbunching content are supported by numerical calculations of the instability gain. The effect is confirmed through the experimental characterization of the spectral brightness of the FERMI FEL under different transverse optics configurations of the transfer line between the linear accelerator and the FEL.