We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regeneration of constant envelope phase-coded signals. This scheme exploits nonlinear interaction between noisy data and a continuous wave beam at a different wavelength in a saturated semiconductor optical amplifier (SOA). We show that proper balancing of the input signals' power allows us to exploit the amplitude limiting effect of SOA saturated gain without introducing significant excess phase noise due to suppression of the α-factor in the amplifier. In a 10-Gb/s nonreturn-to-zero differential phase-shift-keying experiment, both four-wave-mixing (FWM) and pass-through signals are remarkably improved with respect to input data in terms of Q-facto...
We report a detailed experimental characterization of the wavelength conversion of 10 Gb/s Non-Retur...
We experimentally demonstrate phase regeneration of a 40-Gb/s differential phase shift keying (DPSK)...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We demonstrate, for the first time, all-optical phase regeneration of a quaternary phase shift keyin...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
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...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
We present a black-box four wave mixing based bit-rate-flexible phase sensitive amplifier and use it...
International audienceWe experimentally investigate a new generation of multiple-quantum-well semico...
We report a detailed experimental characterization of the wavelength conversion of 10 Gb/s Non-Retur...
We experimentally demonstrate phase regeneration of a 40-Gb/s differential phase shift keying (DPSK)...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We demonstrate, for the first time, all-optical phase regeneration of a quaternary phase shift keyin...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
We demonstrate polarization-independent simultaneous all-optical phase-preserving amplitude regenera...
For the first time we demonstrate simultaneous suppression of phase distortion on two independent 10...
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...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
We present a black-box four wave mixing based bit-rate-flexible phase sensitive amplifier and use it...
International audienceWe experimentally investigate a new generation of multiple-quantum-well semico...
We report a detailed experimental characterization of the wavelength conversion of 10 Gb/s Non-Retur...
We experimentally demonstrate phase regeneration of a 40-Gb/s differential phase shift keying (DPSK)...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...