All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase noise in long-haul transmission of phase-modulated signals. Here we review the latest results on a proposed differential phase shift keying (DPSK) regeneration scheme exploiting a compact architecture based on a saturated semiconductor optical amplifier. The scheme allows for amplitude-only signal regeneration with limited excess phase-noise contribution. Both the pass-through (PT) and the four wave mixing (FWM) signals exhibit enhanced Q-factor and margin improvement in bit error rate vs receiver threshold measurements, making the configuration suitable for both wavelength-preserving optical regeneration and wavelength regenerative conversi...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
International audienceWe experimentally investigate a new generation of multiple-quantum-well semico...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We propose and experimentally characterize polarization independent all-optical phase-preserving am...
We experimentally study the pure amplitude and phase regeneration capabilities of a blackbox degener...
All-optical signal processing schemes are being studied as promising candidates for adoption in futu...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
International audienceWe experimentally investigate a new generation of multiple-quantum-well semico...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We propose and experimentally characterize polarization independent all-optical phase-preserving am...
We experimentally study the pure amplitude and phase regeneration capabilities of a blackbox degener...
All-optical signal processing schemes are being studied as promising candidates for adoption in futu...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
International audienceWe experimentally investigate a new generation of multiple-quantum-well semico...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...