We propose a 10-Gb/s Wavelength-Division-Multiplexed Passive Optical Network(WDM-PON)scheme with upstream transmi-ssion employing Reflective Semiconductor Op-tical Amplifier(RSOA)and Fibre Bragg Gra-ting(FBG)optical e...We propose a 10-Gb/s Wavelength-Division-Multiplexed Passive Optical Network(WDM-PON)scheme with upstream transmi-ssion employing Reflective Semiconductor Op-tical Amplifier(RSOA)and Fibre Bragg Gra-ting(FBG)optical equaliser.Transmissions of 10-Gb/s non return-to-zero signals using a 1.2-GHz RSOA and FBG optical equaliser with different setups are demonstrated.Significant performance improvement and 40-kin standard single mode fibre transmission are achieved using FBG optical equaliser and Remotely Pum-ped Erbium-Doped Fibre Amplifier(RP-EDFA),where they are used to equalise the output of the band-limited RSOA and amplify the seed light and upstream signal,respectively.展开更多
基金ACKNOWLEDGEMENT This work was supported by the National High Technology Research and Development Pro-gram of China under Grant No.2011AA01A-104the National Natural Science Foundation of China under Grant No.61302079the Fund of State Key Laboratory of Information Photonics and Optical Communications,Bei-jing University of Posts and Telecommunica-tions,China.
文摘We propose a 10-Gb/s Wavelength-Division-Multiplexed Passive Optical Network(WDM-PON)scheme with upstream transmi-ssion employing Reflective Semiconductor Op-tical Amplifier(RSOA)and Fibre Bragg Gra-ting(FBG)optical equaliser.Transmissions of 10-Gb/s non return-to-zero signals using a 1.2-GHz RSOA and FBG optical equaliser with different setups are demonstrated.Significant performance improvement and 40-kin standard single mode fibre transmission are achieved using FBG optical equaliser and Remotely Pum-ped Erbium-Doped Fibre Amplifier(RP-EDFA),where they are used to equalise the output of the band-limited RSOA and amplify the seed light and upstream signal,respectively.