We report a 2R optical regenerator based on the Self-Phase Modulation and offset filtering technique in a bi-directional architecture for the simultaneous processing of two optical channels at 10 Gb/s within a single highly nonlinear fiber. Whereas excellent mitigation of the interchannel nonlinear crosstalk is experimentally demonstrated, we identify Rayleigh backscattering as the major source of crosstalk and show how it is related to the regenerator parameters and operational settings. Finally, we demonstrate that this crosstalk does not introduce any significant additional penalties as compared to single channel operation
We experimentally report simultaneous 2R all-optical regeneration of four WDM channels using a dispe...
We present simple scaling rules to optimize the design of 2R optical regenerators relying on Self-Ph...
We demonstrate all-optical regeneration of four WDM channels in a single optical fibre by using pola...
International audienceWe report a 2R optical regenerator based on the Self-Phase Modulation and offs...
All-optical regeneration is likely to be a fundamental building block in next generation optical net...
We experimentally investigate the simultaneous all-optical signal processing of two 40-Gb/s waveleng...
We experimentally demonstrate the simultaneous all-optical regeneration of two 130Gbit/s signals in ...
We experimentally investigate a dispersion managed four-channel 2R regenerator that relies on self-p...
Abstract—We experimentally investigate a dispersion-managed four-channel 2R regenerator that relies ...
Abstract- An All-optical 2R regenerator (Reamplification and Reshaping) is a crucial element in opti...
International audienceWe report on the experimental and theoretical study of a self-phase-modulation...
We demonstrate a four-channel extension to the Mamyshev regenerator and investigate its potential fo...
Topic: Nonlinear opticsInternational audienceIn this work, we numerically investigate the performanc...
In this paper, we demonstrate basic all-optical functions for 2R regeneration (Re-amplification and ...
The design and performance of a novel all-fibre based 2R regenerator are presented. Simulations at 1...
We experimentally report simultaneous 2R all-optical regeneration of four WDM channels using a dispe...
We present simple scaling rules to optimize the design of 2R optical regenerators relying on Self-Ph...
We demonstrate all-optical regeneration of four WDM channels in a single optical fibre by using pola...
International audienceWe report a 2R optical regenerator based on the Self-Phase Modulation and offs...
All-optical regeneration is likely to be a fundamental building block in next generation optical net...
We experimentally investigate the simultaneous all-optical signal processing of two 40-Gb/s waveleng...
We experimentally demonstrate the simultaneous all-optical regeneration of two 130Gbit/s signals in ...
We experimentally investigate a dispersion managed four-channel 2R regenerator that relies on self-p...
Abstract—We experimentally investigate a dispersion-managed four-channel 2R regenerator that relies ...
Abstract- An All-optical 2R regenerator (Reamplification and Reshaping) is a crucial element in opti...
International audienceWe report on the experimental and theoretical study of a self-phase-modulation...
We demonstrate a four-channel extension to the Mamyshev regenerator and investigate its potential fo...
Topic: Nonlinear opticsInternational audienceIn this work, we numerically investigate the performanc...
In this paper, we demonstrate basic all-optical functions for 2R regeneration (Re-amplification and ...
The design and performance of a novel all-fibre based 2R regenerator are presented. Simulations at 1...
We experimentally report simultaneous 2R all-optical regeneration of four WDM channels using a dispe...
We present simple scaling rules to optimize the design of 2R optical regenerators relying on Self-Ph...
We demonstrate all-optical regeneration of four WDM channels in a single optical fibre by using pola...