• DocumentCode
    1206502
  • Title

    Experimental linewidth-insensitive coherent analog optical link

  • Author

    Sabido, Delfin Jay M, IX ; Tabara, Masafumi ; Fong, Thomas K. ; Kalman, Robert F. ; Kazovsky, Leonid G.

  • Author_Institution
    Dept. of Electr. Eng., Stanford Univ., CA, USA
  • Volume
    12
  • Issue
    11
  • fYear
    1994
  • fDate
    11/1/1994 12:00:00 AM
  • Firstpage
    1976
  • Lastpage
    1985
  • Abstract
    We constructed an experimental linewidth-insensitive coherent analog optical link. The transmitter utilizes an external electro-optic amplitude modulator and a semiconductor laser. The receiver consists of a heterodyne front-end, a wideband filter, square law detector and narrowband lowpass filter. We performed experimental measurements and theoretical analyses of the spurious-free dynamic range (SFDR), link gain and noise figure for both the coherent AM and the direct detection links; we investigated the dependencies of the foregoing parameters on the received optical signal power, laser linewidth, IF bandwidth, and the laser relative intensity noise (RIN). By selecting a wide enough bandpass filter, we made the coherent AM link insensitive to laser linewidth. The coherent AM link exhibits a higher SFDR than the corresponding direct detection link when the received optical signal power is less than 85 μW. The noise figure for the coherent link is greater than that for the direct detection link under all conditions investigated. For received optical signal powers greater than 4 μW, the link gain for the direct detection link is greater than that for the coherent AM link. The following are the link parameters that have been achieved for the coherent AM link investigated: SFDR=88 dB·Hz2/3, link gain=-25 dB and noise figure=78 dB; this performance has been obtained with a received optical signal power of 85 μW, and a local oscillator power at the photodetector of 228 μW. The link performance can be further improved by auxiliary subsystems such as a balanced receiver and impedance matched transmitter and receiver ends; and/or by using better optical and electrical devices like higher power lasers, linearized optical modulators, low-noise and high gain RF amplifiers, and optical amplifiers,
  • Keywords
    amplitude modulation; electro-optical modulation; optical fibre communication; optical fibre filters; optical noise; optical receivers; optical transmitters; photodetectors; semiconductor lasers; spectral line breadth; 228 muW; 25 dB; 4 muW; 85 muW; IF bandwidth; balanced receiver; coherent AM link; direct detection links; external electro-optic amplitude modulator; heterodyne front-end; impedance matched transmitter; laser linewidth; laser relative intensity noise; linearized optical modulators; linewidth-insensitive coherent analog optical link; link gain; low-noise; narrowband lowpass filter; noise figure; photodetector; received optical signal power; semiconductor laser; spurious-free dynamic range; square law detector; transmitter; wideband filter; Laser noise; Noise figure; Optical devices; Optical fiber communication; Optical filters; Optical mixing; Optical modulation; Optical noise; Optical receivers; Optical transmitters;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/50.336063
  • Filename
    336063