Literature DB >> 24515188

1306-km 20x124.8-Gb/s PM-64QAM transmission over PSCF with net SEDP 11,300 (b ∙ km)/s/Hz using 1.15 samp/symb DAC.

A Nespola, S Straullu, G Bosco, A Carena, J Yanchao, P Poggiolini, F Forghieri, Y Yamamoto, M Hirano, T Sasaki, J Bauwelinck, K Verheyen.   

Abstract

We demonstrated the transmission of a Nyquist-WDM signal based on PM-64QAM modulation in an EDFA-only submarine configuration composed of 54.4 km-long fiber spans: 20 channels at 124.8-Gb/s were propagated over 1306 km of low-loss pure-silica-core fiber (PSCF). Thanks to an aggressive digital spectral shaping, we achieved a raw spectral efficiency (SE) of 10.4 b/s/Hz, corresponding to 8.67 b/s/Hz net SE when considering a 20% FEC overhead. Transmitter DACs are operated at a record-low 1.15 samples/symbol, enabled by the insertion of advanced anti-alias filters. The achieved SE-times-distance product was 11,327 (b ∙ km)/(s ∙ Hz), the highest reported so far for PM-64QAM. Combining the experimental results with the performance predictions obtained using an analytical model of nonlinear propagation in uncompensated coherent optical systems (the so-called "GN-model"), we show that PM-64QAM is a realistic option for ultra-high capacity systems in the 1,000 km range, carrying up 40 Tb/s in the C-band.

Entities:  

Year:  2014        PMID: 24515188     DOI: 10.1364/OE.22.001796

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  1 in total

1.  Spectrally shaped DP-16QAM super-channel transmission with multi-channel digital back-propagation.

Authors:  Robert Maher; Tianhua Xu; Lidia Galdino; Masaki Sato; Alex Alvarado; Kai Shi; Seb J Savory; Benn C Thomsen; Robert I Killey; Polina Bayvel
Journal:  Sci Rep       Date:  2015-02-03       Impact factor: 4.379

  1 in total

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