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All-optical decision-gating of 10-Gb/s RZ Data in a semiconductor optical amplifier temporally gain-shaped with dark-optical-comb
Journal article   Peer reviewed

All-optical decision-gating of 10-Gb/s RZ Data in a semiconductor optical amplifier temporally gain-shaped with dark-optical-comb

Gong-Ru Lin, Kun-Chieh Yu, Ci-Ling Pan and Yu-Sheng Liao
Journal of Lightwave Technology, Vol.25(7), pp.1651-1658
07/2007

Abstract

All optical Decision gate Gain shaping Injection OC-192 Optical comb Return to zero (RZ) Semiconductor optical amplifier (SOA)
We demonstrate a novel all-optical noninverted OC-192 return-to-zero (RZ) decision-gate by using a semiconductor optical amplifier (SOA) which is gain-controlled to achieve an extremely high cross-gain-modulation depth and a narrow gain window. A dark-optical-comb generated by reshaping the optical clock RZ data in a Mach-Zehnder intensity modulator is employed as an injecting source to temporally deplete most of the gain in the SOA. Such a dark-optical-comb injected SOA decision-gate exhibits improved 3R regeneration performances such as a timing tolerance of 33.5 ps, a Q-factor of 8.1, an input dynamical tolerance of 14 dB, and an extinction ratio (ER) of 14 dB. The deviation between the wavelengths of backward injected dark-optical-comb and input RZ data for optimizing the ER of the decision-gate is determined as δλ= 19nm. Under a threshold operating dark-optical-comb power of 7 dBm, such a decision-gate can recover the - 18.5-dBm degraded RZ data with a bit-error-rate of less than -9 at 10 Gb/s. A negative power penalty of -4.2 dB is demonstrated for the RZ data after 50-km propagation and decision gating. © 2007 IEEE.

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