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Transmission performance improvement using random DFB laser based Raman amplification and bidirectional second-order pumping  
Descripción:
We demonstrate that a distributed Raman amplification scheme based on random distributed feedback (DFB) fiber laser enables bidirectional second-order Raman pumping without increasing relative intensity noise (RIN) of the signal. This extends the reach of 10 × 116 Gb/s DP-QPSK WDM transmission up to 7915 km, compared with conventional Raman amplification schemes. Moreover, this scheme gives the longest maximum transmission distance among all the Raman amplification schemes presented in this paper, whilst maintaining relatively uniform and symmetric signal power distribution, and is also adjustable in order to be highly compatible with different nonlinearity compensation techniques, including mid-link optical phase conjugation (OPC) and nonlinear Fourier transform (NFT).

 

Año de Publicación:    2016
Referencia:    Tan, M.; Rosa, P.; Le, S.T.; Iqbal, M.A.; Phillips, I.D.; Harper, P.; “Transmission performance improvement using random DFB laser based Raman amplification and bidirectional second-order pumping”, Optics Express, vol: 24, Páginas: 2215 – 2221 (2016); doi: 10.1364/OE.24.002215
Revista:    Optics Express
Explotación:    No.
 
Investigación financiada por el Ministerio de Ciencia e Innovación y la Agencia Estatal de Investigación
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