We propose a scheme for phase regeneration of optical binary phase-shift keying (BPSK) data signals based on phase sensitive amplification without active phase locking. A delay interferometer is used to convert a BPSK signal impaired by noise to an amplitude modulated signal followed by cross-phase modulation in a highly nonlinear fiber (HNLF), which transfers the data modulation from the amplitude modulated signal to the phase of a locally generated carrier. By placing the HNLF in a loop, a stable phase relation is maintained relative to a set of counter propagating locally generated phase-locked pumps. As a result, active phase stabilization is avoided. A proof-of-principle experiment is carried out with a dual-pump degenerate phase sensi...
A regenerator for restoring the originally encoded optical phase of a differential-phase-shift-keyed...
We review our recent results regarding regeneration of binary phase encoded signals using phase sens...
We demonstrate numerically phase regeneration of a star8QAM signal with two amplitude and four phase...
We propose and demonstrate simultaneous phase regeneration of six non-return-to-zero (NRZ) binary ph...
We propose and demonstrate a novel PSK regenerator based on phase sensitive amplification without ac...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
We realize phase-sensitive regeneration in a highly non-linear fiber for BPSK signals by employing p...
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...
Amplification and simultaneous phase regeneration of DPSK signals is demonstrated using a phase- sen...
We propose a scheme for phase regeneration of an optical binary phase shift keying (BPSK) data signa...
Future high capacity optical links will have to make use of frequent signal regeneration to enable l...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
DPSK phase- and- amplitude regeneration with a NOLM- based phase- sensitive amplifier is demonstrate...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
A regenerator for restoring the originally encoded optical phase of a differential-phase-shift-keyed...
We review our recent results regarding regeneration of binary phase encoded signals using phase sens...
We demonstrate numerically phase regeneration of a star8QAM signal with two amplitude and four phase...
We propose and demonstrate simultaneous phase regeneration of six non-return-to-zero (NRZ) binary ph...
We propose and demonstrate a novel PSK regenerator based on phase sensitive amplification without ac...
Phase-sensitive amplifiers (PSAs) offer numerous advantages over phase-insensitive amplifiers in opt...
We realize phase-sensitive regeneration in a highly non-linear fiber for BPSK signals by employing p...
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...
Amplification and simultaneous phase regeneration of DPSK signals is demonstrated using a phase- sen...
We propose a scheme for phase regeneration of an optical binary phase shift keying (BPSK) data signa...
Future high capacity optical links will have to make use of frequent signal regeneration to enable l...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
DPSK phase- and- amplitude regeneration with a NOLM- based phase- sensitive amplifier is demonstrate...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
A regenerator for restoring the originally encoded optical phase of a differential-phase-shift-keyed...
We review our recent results regarding regeneration of binary phase encoded signals using phase sens...
We demonstrate numerically phase regeneration of a star8QAM signal with two amplitude and four phase...