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Laser-slicing at a low-emittance storage ring.

Simone Di Mitri1, William Barletta2, Anna Bianco1

  • 1Elettra - Sincrotrone Trieste SCpA, Basovizza, 34149 Trieste, Italy.

Journal of Synchrotron Radiation
|September 7, 2019
PubMed
Summary
This summary is machine-generated.

This study explores laser-slicing for soft X-ray generation at storage ring light sources. Optimized laser-slicing achieves higher efficiency without disrupting operations, enabling advanced research.

Keywords:
diffraction limitlaser slicingradiation backgroundstorage ringsynchrotron light sourceundulator radiation

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Area of Science:

  • * Physics
  • * Accelerator Science
  • * Photon Science

Background:

  • * Soft X-ray generation at storage ring light sources is crucial for various scientific disciplines.
  • * Existing methods face limitations in efficiency and pulse quality.
  • * Laser-slicing offers a promising technique for generating high-quality X-ray pulses.

Purpose of the Study:

  • * To investigate the theoretical and numerical aspects of laser-slicing at a diffraction-limited storage ring.
  • * To determine the optimal conditions for maximizing slicing efficiency.
  • * To assess the feasibility of implementing laser-slicing without compromising standard operations.

Main Methods:

  • * Theoretical modeling and numerical simulations were employed.
  • * Analysis focused on the impact of ultra-low beam emittance.
  • * A 1:1 imaging configuration was designed for spatial and spectral separation.

Main Results:

  • * Ultra-low beam emittance significantly enhances slicing efficiency.
  • * Laser-slicing can be integrated without interfering with multi-bunch operation.
  • * A configuration for the Elettra 2.0 lattice shows a potential efficiency of 10-7, an order of magnitude improvement.
  • * Achieved pulse durations are approximately 0.4 ps FWHM with average laser power around 40 W.

Conclusions:

  • * Laser-slicing is a viable technique for producing high-efficiency soft X-ray pulses.
  • * The proposed method offers a substantial improvement over the state-of-the-art.
  • * This advancement has significant implications for future X-ray research and applications.