We report on quadrature demultiplexing of a quadrature phase-shift keying (QPSK) signal into two cross-polarized binary phase-shift keying (BPSK) signals with negligible penalty at bit-error rate (BER) equal to 10−9. The all-optical quadrature demultiplexing is achieved using a degenerate vector parametric amplifier operating in phase-insensitive mode. We also propose and demonstrate the use of a novel and simple phase-locked loop (PLL) scheme based on detecting the envelope of one of the signals after demultiplexing in order to achieve stable quadrature decomposition
Abstract: Sideband-enhanced parametric de-amplification enables efficient and various squeezing of Q...
A technique that allows the all-optical quantization of M-PSK signals using a parametric mixing proc...
We demonstrate system experiments for polarization-independent parametric amplification and waveleng...
We report on quadrature demultiplexing of a quadrature phase-shift keying (QPSK) signal into two cro...
This thesis covers the analysis of several schemes for parametric processing in fiberoptic communica...
This work is devoted to the characterization of vector phase-sensitive amplifiers and processors. A ...
A "black-box" phase sensitive amplifier is presented achieving simultaneous suppression of determini...
Phase sensitive amplification (PSA) is a remarkably powerful tool if implemented correctly - it allo...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
We propose and experimentally demonstrate a phase-sensitive optical processor, capable of generating...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We demonstrate all-optical regeneration of both the phase and the amplitude of a $10$\,GBaud quadrat...
We propose a novel black-box optical phase sensitive amplifier (PSA) configuration and describe its ...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
Simultaneous conversion of the two orthogonal phase components of an optical input to different outp...
Abstract: Sideband-enhanced parametric de-amplification enables efficient and various squeezing of Q...
A technique that allows the all-optical quantization of M-PSK signals using a parametric mixing proc...
We demonstrate system experiments for polarization-independent parametric amplification and waveleng...
We report on quadrature demultiplexing of a quadrature phase-shift keying (QPSK) signal into two cro...
This thesis covers the analysis of several schemes for parametric processing in fiberoptic communica...
This work is devoted to the characterization of vector phase-sensitive amplifiers and processors. A ...
A "black-box" phase sensitive amplifier is presented achieving simultaneous suppression of determini...
Phase sensitive amplification (PSA) is a remarkably powerful tool if implemented correctly - it allo...
Polarization-switched quadrature phase-shift keying has been demonstrated experimentally at 40.5Gb/s...
We propose and experimentally demonstrate a phase-sensitive optical processor, capable of generating...
We report for the first time the experimental demonstration of doubly differential quadrature phase ...
We demonstrate all-optical regeneration of both the phase and the amplitude of a $10$\,GBaud quadrat...
We propose a novel black-box optical phase sensitive amplifier (PSA) configuration and describe its ...
We demonstrate, for the first time to our knowledge, regeneration of a 42.66-Gb/s differential phase...
Simultaneous conversion of the two orthogonal phase components of an optical input to different outp...
Abstract: Sideband-enhanced parametric de-amplification enables efficient and various squeezing of Q...
A technique that allows the all-optical quantization of M-PSK signals using a parametric mixing proc...
We demonstrate system experiments for polarization-independent parametric amplification and waveleng...