• DocumentCode
    1194501
  • Title

    Photonic crystal fibre based all-optical modulation format conversions between NRZ and RZ with hybrid clock recovery from a PRZ signal

  • Author

    Kwok, C.H. ; Lee, S.H. ; Chow, K.K. ; Lin, C.

  • Author_Institution
    Dept. of Electron. Eng., Chinese Univ. of Hong Kong
  • Volume
    1
  • Issue
    1
  • fYear
    2007
  • fDate
    2/1/2007 12:00:00 AM
  • Firstpage
    47
  • Lastpage
    53
  • Abstract
    Several all-optical modulation format-converting schemes are described for non-return-to-zero (NRZ) and return-to-zero (RZ) modulation formats that make use of spectral filtering of either self-phase modulation (SPM) or cross-phase modulation (XPM) broadened signal spectrum in a highly-nonlinear dispersion-flattened photonic-crystal fibre. Format conversions have been performed between the most widely used modulation formats - NRZ and RZ. In addition, a hybrid clock recovery scheme is proposed to obtain the data rate of the NRZ signal for NRZ-to-RZ format conversion. All format-converting schemes are based on the extraction of the spectral components in a nonlinear phase modulation broadened signal spectrum. In NRZ-to-RZ format conversion, a periodic pulse train, at a repetition rate similar to the NRZ data rate, is used as a control that induces a nonlinear phase shift to the NRZ probe signal and broadens its spectrum. The spectral components, contributed by different time instances of the control pulse, can be extracted as the converted RZ signal output. In RZ-to-NRZ format conversion, the RZ signal serves as a control that induces a nonlinear phase shift to a continuous wave probe light, where a logic-inverted NRZ signal can be extracted by filtering out the chirped components. Format conversions between NRZ and RZ signals at 9.95328 GB/s (OC-192) are demonstrated. As the proposed optical signal-processing schemes make use of the fibre nonlinearity (SPM/XPM), it is possible to extend it to a high-speed operation <160 Gb/s. Therefore the proposed format-converting schemes can serve as a format converter between the optical time-division multiplexed networks and the wavelength division multiplexed networks
  • Keywords
    optical fibres; optical modulation; photonic crystals; self-phase modulation; time division multiplexing; wavelength division multiplexing; all-optical modulation format-converting schemes; format-converting schemes; high-speed operation; highly-nonlinear dispersion-flattened photonic-crystal fibre; hybrid clock recovery; hybrid clock recovery scheme; logic-inverted NRZ signal; nonlinear phase modulation broadened signal spectrum; optical signal-processing schemes; optical time division multiplexed networks; photonic crystal fibre based all-optical modulation format conversions; spectral components; wavelength division multiplexed networks;
  • fLanguage
    English
  • Journal_Title
    Optoelectronics, IET
  • Publisher
    iet
  • ISSN
    1751-8768
  • Type

    jour

  • DOI
    10.1049/iet-opt:20050110
  • Filename
    4117444