Abstract: We demonstrate a novel 40-Gb/s optical 3R regenerator that utilizes a traveling-wave electroabsorption modulator-based optical clock recovery. A regenerative fiber XPM wavelength converter is used to implement re-shaping function. 3R regeneration is demonstrated with a reduced timing jitter. ©2005 Optical Society of America OCIS codes: (060.2330) Fiber optics communications, (070.4560) Optical data processin
Optical signal regeneration is required for implementing transparent optical telecommunication netwo...
A new all-optical clock operating from 6 to 46 GHz is presented and tested in 40 Gbit/s soliton 3R r...
A study on 3R all-optical signal regeneration was presented. Architecture for 3 R regeneration, re-t...
Abstract—We describe an optical clock recovery circuit that employs a traveling-wave electroabsorpti...
Abstract—We propose and demonstrate a novel reamplification, retiming, and reshaping regeneration ap...
A novel 'optically clocked' 3R regenerator (OC-3R) preserving the data wavelength and logic is prese...
Functional elements and architectures for building up 3R (re-amplification, re-shaping, and re-timin...
A true all-optical 3R regenerator based on the "Alternating Data Clock" scheme is assembled applying...
Abstract—We propose an optical 3R regenerator that incor-porates a clock enhancement stage based on ...
Abstract—Compact optical clock recovery is demonstrated by utilizing filtered and amplified photocur...
Abstract—An injection-locking traveling-wave electroabsorp-tion modulator-based ring oscillator is d...
All-optical 3R regeneration is performed using a dc-operated self-pulsating DFB laser (0.8 mm) for o...
Abstract All optical 3R regeneration is a key function of the future all optical network and ultra-l...
session We3.P « posters » [We3.P.91], ISBN 2-912328-34-9International audienceWe propose an original...
Abstract A compact traveling-wave electroabsorption modulator-based ring oscillator is utilized to p...
Optical signal regeneration is required for implementing transparent optical telecommunication netwo...
A new all-optical clock operating from 6 to 46 GHz is presented and tested in 40 Gbit/s soliton 3R r...
A study on 3R all-optical signal regeneration was presented. Architecture for 3 R regeneration, re-t...
Abstract—We describe an optical clock recovery circuit that employs a traveling-wave electroabsorpti...
Abstract—We propose and demonstrate a novel reamplification, retiming, and reshaping regeneration ap...
A novel 'optically clocked' 3R regenerator (OC-3R) preserving the data wavelength and logic is prese...
Functional elements and architectures for building up 3R (re-amplification, re-shaping, and re-timin...
A true all-optical 3R regenerator based on the "Alternating Data Clock" scheme is assembled applying...
Abstract—We propose an optical 3R regenerator that incor-porates a clock enhancement stage based on ...
Abstract—Compact optical clock recovery is demonstrated by utilizing filtered and amplified photocur...
Abstract—An injection-locking traveling-wave electroabsorp-tion modulator-based ring oscillator is d...
All-optical 3R regeneration is performed using a dc-operated self-pulsating DFB laser (0.8 mm) for o...
Abstract All optical 3R regeneration is a key function of the future all optical network and ultra-l...
session We3.P « posters » [We3.P.91], ISBN 2-912328-34-9International audienceWe propose an original...
Abstract A compact traveling-wave electroabsorption modulator-based ring oscillator is utilized to p...
Optical signal regeneration is required for implementing transparent optical telecommunication netwo...
A new all-optical clock operating from 6 to 46 GHz is presented and tested in 40 Gbit/s soliton 3R r...
A study on 3R all-optical signal regeneration was presented. Architecture for 3 R regeneration, re-t...