100-Gb/s Wavelength Division Demultiplexing Using a Photonic Crystal Four-Channel Drop Filter

We report on the first demonstration of the wavelength demultiplexing of a 100-Gb/s nonreturn to zero signal to four channels at 25 Gb/s, based on resonant structures implemented in GaInP photonic crystals. The device is composed of four filters based on H0 cavities with one common input bus and fou...

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Veröffentlicht in:IEEE photonics technology letters 2013-05, Vol.25 (9), p.813-816
Hauptverfasser: Thanh Nam Nguyen, Gay, M., Lengle, K., Bramerie, L., Thual, M., Simon, J. C., Malaguti, S., Bellanca, G., Trillo, S., Combrie, S., Lehoucq, G., De Rossi, A.
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container_end_page 816
container_issue 9
container_start_page 813
container_title IEEE photonics technology letters
container_volume 25
creator Thanh Nam Nguyen
Gay, M.
Lengle, K.
Bramerie, L.
Thual, M.
Simon, J. C.
Malaguti, S.
Bellanca, G.
Trillo, S.
Combrie, S.
Lehoucq, G.
De Rossi, A.
description We report on the first demonstration of the wavelength demultiplexing of a 100-Gb/s nonreturn to zero signal to four channels at 25 Gb/s, based on resonant structures implemented in GaInP photonic crystals. The device is composed of four filters based on H0 cavities with one common input bus and four drop outputs showing a very small footprint. The measured device characteristics show good performances in terms of transmission and crosstalk with insertion losses of 11 dB on the best port. System measurements have validated its operation with
doi_str_mv 10.1109/LPT.2013.2252888
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subjects Bit error rate
Cavity resonators
Channel spacing
Engineering Sciences
Optical communication
Optical fiber filters
Optical waveguides
Optics
Photonic
photonic crystal waveguides
Photonic crystals
Wavelength division multiplexing
wavelength filtering device
title 100-Gb/s Wavelength Division Demultiplexing Using a Photonic Crystal Four-Channel Drop Filter
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