4.8 Article

High-order coherent communications using mode-locked dark-pulse Kerr combs from microresonators

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-04046-6

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资金

  1. Swedish Research Council (VR)
  2. National Science Foundation (NSF) [1509578-ECCS]
  3. DARPA [W31P4Q-13-1-0018]
  4. AFOSR [FA9550-15-1-0211]
  5. Directorate For Engineering
  6. Div Of Electrical, Commun & Cyber Sys [1509578] Funding Source: National Science Foundation

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Microresonator frequency combs harness the nonlinear Kerr effect in an integrated optical cavity to generate a multitude of phase-locked frequency lines. The line spacing can reach values in the order of 100 GHz, making it an attractive multi-wavelength light source for applications in fiber-optic communications. Depending on the dispersion of the micro-resonator, different physical dynamics have been observed. A recently discovered comb state corresponds to the formation of mode-locked dark pulses in a normal-dispersion microcavity. Such dark-pulse combs are particularly compelling for advanced coherent communications since they display unusually high power-conversion efficiency. Here, we report the first coherent-transmission experiments using 64-quadrature amplitude modulation encoded onto the frequency lines of a dark-pulse comb. The high conversion efficiency of the comb enables transmitted optical signal-to-noise ratios above 33 dB, while maintaining a laser pump power level compatible with state-of-the-art hybrid silicon lasers.

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