• DocumentCode
    1085565
  • Title

    Noise analysis of an amplified fiber-optic recirculating-ring delay line

  • Author

    Kringlebotn, Jon Thomas ; Bløtekjær, Kjell

  • Author_Institution
    Optoelectron. Res. Centre, Southampton Univ., UK
  • Volume
    12
  • Issue
    3
  • fYear
    1994
  • fDate
    3/1/1994 12:00:00 AM
  • Firstpage
    573
  • Lastpage
    582
  • Abstract
    We present the first theoretical and experimental noise analysis of a fiber-optic recirculating-ring delay line (RDL) including a doped fiber amplifier to compensate for the roundtrip loss. Both thermal-like sources and laser sources are considered. The output source induced noise (signal-signal beat noise), signal-spontaneous (s-sp) beat noise, and spontaneous-spontaneous (sp-sp) beat noise spectra for a thermal-like source are calculated from the autocorrelation function of the output detector current. It is shown that all three electrical beat noise spectra can be expressed as correlations of the output optical signal and ASE spectra. The source-induced noise will normally be the dominating noise source, but in some applications, the other noise terms also will be of importance. We use our theory to define the maximum number of recirculations in an amplified RDL with a pulsed source, where the fundamental noise floor is determined by the sp-sp beat noise
  • Keywords
    delay lines; fibre lasers; noise; optical fibres; optical links; ASE spectra; amplified fiber-optic recirculating-ring delay line; autocorrelation function; dominating noise source; doped fiber amplifier; electrical beat noise spectra; fundamental noise floor; laser sources; noise analysis; output detector current; output optical signal; output source induced noise; roundtrip loss; signal-signal beat noise; signal-spontaneous beat noise; source-induced noise; sp-sp beat noise; spontaneous-spontaneous beat noise spectra; thermal-like source; thermal-like sources; Autocorrelation; Delay lines; Detectors; Doped fiber amplifiers; Fiber lasers; Laser noise; Laser theory; Optical noise; Optical pulses; Stimulated emission;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/50.285340
  • Filename
    285340