• DocumentCode
    748124
  • Title

    International comparisons of femtosecond laser frequency combs

  • Author

    Ma, Long-Sheng ; Bi, Zhiyi ; Bartels, Albrecht ; Robertsson, Lennart ; Zucco, Massimo ; Windeler, Robert S. ; Wilpers, Guido ; Oates, Chris ; Hollberg, Leo ; Diddams, Scott A.

  • Author_Institution
    Bur. Int. des Poids et Mesures, Sevres, France
  • Volume
    54
  • Issue
    2
  • fYear
    2005
  • fDate
    4/1/2005 12:00:00 AM
  • Firstpage
    746
  • Lastpage
    749
  • Abstract
    Two types of international comparisons of femtosecond laser frequency combs have been performed in France and the USA. Five combs were involved in the comparisons. Three combs, of which two are transportable, employ nonlinear photonic crystal fiber (PCF) to obtain a wide spectrum covering a full optical octave. The other two are based on broadband femtosecond lasers and require no PCF. The comparisons were performed by counting the optical heterodyne beats between pairs of combs. The frequency agreement among three combs was at the subhertz level in the 563 THz part of the comb spectrum when the combs were referenced to a hydrogen maser. When the combs were referenced to an optical standard, the frequency agreement among four combs was much improved and found to be at the ∼10-19 level in the spectral range of 333-473 THz. The fact that this result is obtained by five independent measurement systems (combs) strengthens the conclusion that no systematic effects are present at this level.
  • Keywords
    frequency standards; high-speed optical techniques; lasers; 333 to 473 THz; 563 THz; broadband femtosecond lasers; comb pairs; comb spectrum; femtosecond laser; frequency combs; frequency measurement; frequency standards; hydrogen maser; measurement systems; nonlinear photonic crystal fiber; optical heterodyne beats; optical octave; optical standard; Atom optics; Fiber nonlinear optics; Frequency; Laboratories; Nonlinear optics; Optical devices; Optical mixing; Optical noise; Particle beam optics; Ultrafast optics; Femtosecond laser; frequency measurement; frequency standards;
  • fLanguage
    English
  • Journal_Title
    Instrumentation and Measurement, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9456
  • Type

    jour

  • DOI
    10.1109/TIM.2005.843580
  • Filename
    1408279