Parallel multi-wavelength intradyne reception using an optical frequency comb as a local oscillator
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C. Koos | W. Freude | P. Marin | J. Pfeifle | S. Wolf | F. Smyth | J. N. Kemal | M. Deseada Gutierrez Pascual
[1] R Phelan,et al. Generation of Coherent Multicarrier Signals by Gain Switching of Discrete Mode Lasers , 2011, IEEE Photonics Journal.
[2] J. Leuthold,et al. Silicon-organic hybrid (SOH) frequency comb sources for terabit/s data transmission. , 2014, Optics express.
[3] Tiejun Xia,et al. Technical considerations for supporting data rates beyond 100 Gb/s , 2012, IEEE Communications Magazine.
[4] B. Nebendahl,et al. Single-laser 32.5 Tbit/s Nyquist WDM transmission , 2012, IEEE/OSA Journal of Optical Communications and Networking.
[5] S. Radic,et al. Ultrahigh Count Coherent WDM Channels Transmission Using Optical Parametric Comb-Based Frequency Synthesizer , 2015, Journal of Lightwave Technology.
[6] W. Freude,et al. Flexible terabit/s Nyquist-WDM superchannels with net SE > 7bit/s/Hz using a gain-switched comb source , 2014, 2014 Conference on Lasers and Electro-Optics (CLEO) - Laser Science to Photonic Applications.
[7] M. Lauermann,et al. Coherent terabit communications with microresonator Kerr frequency combs , 2013, Nature Photonics.
[8] Leonid G. Kazovsky,et al. New FSK phase-diversity receiver in a 150 mbit/s coherent optical transmission system , 1988 .
[9] Peter J. Winzer,et al. Beyond 100G Ethernet , 2010, IEEE Communications Magazine.
[10] Christopher R. Cole,et al. 100-Gb/s and beyond transceiver technologies , 2011 .