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We experimentally investigate the ability of an alloptical 2R regenerator to suppress impairments caused by intra-channel four-wave mixing (IFWM) and intrachannel cross-phase modulation (IXPM), whi

We experimentally investigate the ability of an all-optical 2R-regenerator to suppress impairments caused by intra-channel four-wave mixing and intra-channel cross-phase modulation, which are the t

We demonstrate all-optical recognition of a byte pattern embedded in phase-shift-keyed data streaming at 40 Gb/s.

All-optical clock recovery for the nonreturn-to-zero differential phase-shift-keying (NRZ-DPSK) modulation format is demonstrated experimentally at 40 Gb/s using a self-pulsating distributed Bragg

In this letter, we demonstrate clock extraction from 10-Gb/s asynchronous short data packets.

The performance of a quantum-dash Fabry-Pérot laser is experimentally characterized for 40 Gb/s RZ-DPSK and NRZ-DPSK clock recovery, 40 Gb/s RZ-OOK all-optical 3R regeneration, and 160 Gb/s OTDM su

We demonstrate a method of minimizing the wavelength sensitivity of the all-optical bit-pattern recognition relying on a passive optical correlator.

A vertical-access passive all-optical gate has been used to improve the extinction ratio of a 160 GHz pico-second pulse train at 1555 nm.

The feasibility of all all-optical logic AND gate is demonstrated by using a semiconductor optical amplifier (SOA) based oil the Mach-Zehnder interferometer (MZI).

All-optical OR operation has been demonstrated using a semiconductor optical amplifier (SOA) and delayed interferometer (DI) at 80 Gb/s. The DI is based on a polarization maintaining loop mirror.

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