Four-user, 2.5-Gb/s, spectrally coded OCDMA system demonstration using low-power nonlinear processing

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Abstract

This paper describes the demonstration of 2.5-Gb/s four-user optical-code-division-multiple-access (OCDMA) system operating at bit-error rate ≤ 10-11 utilizing programmable spectral phase encoding, an ultrasensitive (∼200 fJ/b) periodically poled lithium-niobate-waveguide nonlinear waveform discriminator and 10G Ethernet receiver. A comprehensive description of this ultra-short-pulse spectral phase-coded OCDMA system is presented. On the subsystem level, two key component technologies, namely, femtosecond encoding/decoding and low-power high-contrast nonlinear discrimination, have been developed and characterized. At the system level, data for the four-user OCDMA system operating at 2.5 Gb/s for binary as well as multilevel code families are described. © 2005 IEEE.

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Jiang, Z., Seo, D. S., Yang, S. D., Leaird, D. E., Roussev, R. V., Langrock, C., … Weiner, A. M. (2005). Four-user, 2.5-Gb/s, spectrally coded OCDMA system demonstration using low-power nonlinear processing. Journal of Lightwave Technology, 23(1), 143–158. https://doi.org/10.1109/JLT.2004.840039

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