Parametric Amplification, Wavelength Conversion, and Phase Conjugation of a 2.048-Tbit/s WDM PDM 16-QAM Signal

Lightwave Technology, Journal of  (2015)

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摘要
We demonstrate polarization-independent parametric amplification of a 2.048-Tbit/s 8-WDM PDM 16-QAM signal and simultaneous wavelength conversion and phase conjugation in a highly nonlinear fiber. Two high-power continuous-wave pumps with orthogonal polarizations and counter-phase modulation are used in the fiber optical parametric amplifier (FOPA) to achieve broadband flat gain, polarization independence, and high-quality idler generation. The polarization-independent FOPA is amplitude and phase preserving and has ~10 dB on-off gain for the signal and ~9 dB conversion efficiency for the idler with a 1-dB bandwidth of ~16 nm. Compared to the back-to-back case, the amplified signals and the wavelength-converted conjugates have mean Q2 penalties of only 0.6 and 0.4 dB, respectively, with variances of Q2 factors across all the wavelength-division-multiplexed channels of only 0.3 dB. This demonstration shows the great promise of optical signal processing techniques to simultaneously process large-capacity multiple-channel multilevel signals with almost no latency and potentially low power consumption.
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关键词
optical fibre amplifiers,optical fibre polarisation,optical information processing,optical modulation,optical parametric amplifiers,phase modulation,quadrature amplitude modulation,wavelength division multiplexing,8-wdm pdm 16-qam signal,fopa,bit rate 2.048 tbit/s,broadband flat gain,fiber optical parametric amplifier,gain 0.3 db,gain 0.4 db,gain 0.6 db,gain 1 db,high-power continuous-wave pump,high-quality idler generation,highly nonlinear fiber,large-capacity multiple-channel multilevel signal,optical signal processing technique,orthogonal polarization-independent parametric amplification,phase conjugation,polarization-division-multiplexing,power consumption,wavelength conversion,wavelength-division-multiplexed channel,16-state quadrature amplitude modulation (16-qam),fiber optical parametric amplification (fopa),four-wave mixing (fwm),highly non-linear fiber (hnlf),optical phase conjugation (opc),optical signal processing (osp),polarization diversity,wavelength-division-multiplexing (wdm),gain
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