We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase-shift keyed signal using a dual-pump nondegenerate four-wave-mixing-based fiber-optic parametric amplifier. The regenerative performance of the subsystem is characterized in terms of bit-error rate against narrowband and wideband introduced noise. While a strong receiver sensitivity improvement, up to 20 dB, is noticed against narrowband noise, against quasi-random (wideband) noise we observe a regeneration of 2.7 dB
We report the first experimental demonstration of parametric amplification and all-optical phase-pre...
A "black-box" phase sensitive amplifier is presented achieving simultaneous suppression of determini...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
We experimentally study the pure amplitude and phase regeneration capabilities of a blackbox degener...
DPSK phase- and- amplitude regeneration with a NOLM- based phase- sensitive amplifier is demonstrate...
Amplification and simultaneous phase regeneration of DPSK signals is demonstrated using a phase- sen...
We present a black-box four wave mixing based bit-rate-flexible phase sensitive amplifier and use it...
Phase sensitive amplification (PSA) is a remarkably powerful tool if implemented correctly - it allo...
We experimentally demonstrate phase regeneration of a 40-Gb/s differential phase shift keying (DPSK)...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
Future high capacity optical links will have to make use of frequent signal regeneration to enable l...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
We report the first experimental demonstration of parametric amplification and all-optical phase-pre...
A "black-box" phase sensitive amplifier is presented achieving simultaneous suppression of determini...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
We experimentally study the pure amplitude and phase regeneration capabilities of a blackbox degener...
DPSK phase- and- amplitude regeneration with a NOLM- based phase- sensitive amplifier is demonstrate...
Amplification and simultaneous phase regeneration of DPSK signals is demonstrated using a phase- sen...
We present a black-box four wave mixing based bit-rate-flexible phase sensitive amplifier and use it...
Phase sensitive amplification (PSA) is a remarkably powerful tool if implemented correctly - it allo...
We experimentally demonstrate phase regeneration of a 40-Gb/s differential phase shift keying (DPSK)...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
Future high capacity optical links will have to make use of frequent signal regeneration to enable l...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
We report the first experimental demonstration of parametric amplification and all-optical phase-pre...
A "black-box" phase sensitive amplifier is presented achieving simultaneous suppression of determini...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...