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Related Experiment Videos

SINBAD, a brilliant IR source from the DAPhiNE storage ring.

A Marcelli1, E Burattini, C Mencuccini

  • 1INFN-LNF, PO Box 13, 00044 Frascati, Italy.

Journal of Synchrotron Radiation
|July 21, 2004
PubMed
Summary

The SINBAD beamline will provide brilliant infrared synchrotron radiation from the DAPhiNE collider. This advanced infrared (IR) system will enable new scientific investigations at long wavelengths.

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Area of Science:

  • Physics
  • Materials Science
  • Synchrotron Radiation

Background:

  • The DAΦNE collider will provide high beam current (up to 5 A) at 0.51 GeV.
  • High-current synchrotrons enable the generation of brilliant infrared (IR) radiation.
  • Existing IR sources have limitations in brilliance and wavelength coverage.

Purpose of the Study:

  • To describe the design and capabilities of the SINBAD infrared synchrotron radiation beamline.
  • To detail the optical system and experimental setup for SINBAD.
  • To highlight the potential for novel research using enhanced IR radiation.

Main Methods:

  • Ray-tracing simulations were used to design the beamline optics.
  • The beamline incorporates six mirrors for focusing and collimation.

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  • A wedged CVD diamond-film window and a Michelson interferometer are key components.
  • Main Results:

    • The SINBAD beamline is designed for infrared radiation with wavelengths greater than 10 micrometers.
    • The extracted IR radiation will be significantly more brilliant than a 2000 K black body at 100 micrometers.
    • The optical system efficiently transfers and prepares the radiation for experimental use.

    Conclusions:

    • SINBAD will be a powerful new infrared synchrotron radiation source.
    • The beamline's design ensures high brilliance and suitability for long-wavelength studies.
    • The installation on DAΦNE positions SINBAD to advance research in various scientific fields.