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We introduce a new distributed signaling algorithm that implements an intelligent mechanism to resolve possible contentions among resource requests without falling into deadlocks.

We extend our proof-of-concept demonstration of a novel multi-flow transmitter for next generation optical metro networks.

A multi-frequency transconductance technique for interface characterization of sub-micron SOI-MOSFETs is implemented.

We report the triple-functionality at 10-Gb/s of an integrated R-EAM-SOA, including modulation, detection and noise-mitigated 2R optical signal regeneration.

Electronic Raman scattering studies on MgB2 single crystals as a function of excitation and polarization have revealed three distinct superconducting features: a clean gap below 37 cm-1 and two coh

We study two specific techniques to implement an electro-optical cross-connect switch: Time Division Multiplex (TDM) and Frequency Division Multiplex (FDM).

High-speed avalanche photodiodes and high-sensitivity receivers are vital components for future multi-gigabit/s lightwave transmission systems.

Parallel optical interconnects are experimentally assessed as a technology that may offer the high-throughput data communication capabilities required to the next-generation on-board digital proces

We report 8-Gb/s transmission over 8-km of single-mode fiber using a 2-channel optical time division multiplexed system.

We have characterized the FM response of frequency-tunable two-electrode DFB leasers operating at 1.3 microns.

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