4 Tb/s transmission reach enhancement using 10 × 400 Gb/s super-channels and polarization insensitive dual band optical phase conjugation


Autoria(s): Ellis, Andrew D.; Tan, Mingming; Iqbal, Md Asif; Al-Khateeb, Mohammad Ahmad Zaki; Gordienko, Vladimir; Saavedra Mondaca, Gabriel; Fabbri, Simon; Stephens, Marc F.C.; McCarthy, Mary E.; Perentos, Andreas; Phillips, Ian David; Lavery, Domaniç; Liga, Gabriele; Maher, Robert; Harper, Paul; Doran, Nick; Turitsyn, Sergei K.; Sygletos, Stylianos; Bayvel, Polina
Data(s)

15/04/2016

Resumo

In this paper, we experimentally demonstrate the benefit of polarization insensitive dual-band optical phase conjugation for up to ten 400 Gb/s optical super-channels using a Raman amplified transmission link with a realistic span length of 75 km. We demonstrate that the resultant increase in transmission distance may be predicted analytically if the detrimental impacts of power asymmetry and polarization mode dispersion are taken into account.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/28972/1/OPC_experiment_JLT_version_4_final_author_files_all_eps_figs_.pdf

Ellis, Andrew D.; Tan, Mingming; Iqbal, Md Asif; Al-Khateeb, Mohammad Ahmad Zaki; Gordienko, Vladimir; Saavedra Mondaca, Gabriel; Fabbri, Simon; Stephens, Marc F.C.; McCarthy, Mary E.; Perentos, Andreas; Phillips, Ian David; Lavery, Domaniç; Liga, Gabriele; Maher, Robert; Harper, Paul; Doran, Nick; Turitsyn, Sergei K.; Sygletos, Stylianos and Bayvel, Polina (2016). 4 Tb/s transmission reach enhancement using 10 × 400 Gb/s super-channels and polarization insensitive dual band optical phase conjugation. Journal of Lightwave Technology, 34 (8), pp. 1717-1723.

Relação

http://eprints.aston.ac.uk/28972/

Tipo

Article

PeerReviewed