Adopting an exact solution to four-wave mixing (FWM), wherein harmonic evolution is described by the sum of two Bessel functions, we identify two causes of amplitude to phase noise conversion which impair FWM saturation based amplitude regenerators: self-phase modulation (SPM) and Bessel-order mixing (BOM). By increasing the pump to signal power ratio, we may arbitrarily reduce their impact, realising a phase preserving amplitude regenerator. We demonstrate the technique by applying it to the regeneration of a 10 GBaud QPSK signal, achieving a high level of amplitude squeezing with minimal amplitude to phase noise conversion
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We propose and numerically verify a scheme of phase-sensitive amplifier (PSA) using four-wave mixing...
Frequency-shift-free all-optical amplitude regenerators based on fiber-four-wave mixing were investi...
Adopting an exact solution to four-wave mixing (FWM), wherein harmonic evolution is described by the...
We carry out a detailed experimental characterization of a four-wave mixing based amplitude limiter ...
We propose and demonstrate a technique to obtain phase preservation in optical processing which is s...
We present a FWM-based amplitude regenerator that includes an optical phase pre-distortion stage to ...
All-optical signal processing schemes are being studied as promising candidates for adoption in futu...
We use Bessel function analysis of an amplitude limiter based on four-wave mixing in a highly nonlin...
All-optical phase and amplitude regeneration of a QPSK signal using only two nonlinear stages is ach...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
Phase-sensitive amplification (PSA), which is produced by degenerate four-wave mixing (FWM) in a ran...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We propose and numerically verify a scheme of phase-sensitive amplifier (PSA) using four-wave mixing...
Frequency-shift-free all-optical amplitude regenerators based on fiber-four-wave mixing were investi...
Adopting an exact solution to four-wave mixing (FWM), wherein harmonic evolution is described by the...
We carry out a detailed experimental characterization of a four-wave mixing based amplitude limiter ...
We propose and demonstrate a technique to obtain phase preservation in optical processing which is s...
We present a FWM-based amplitude regenerator that includes an optical phase pre-distortion stage to ...
All-optical signal processing schemes are being studied as promising candidates for adoption in futu...
We use Bessel function analysis of an amplitude limiter based on four-wave mixing in a highly nonlin...
All-optical phase and amplitude regeneration of a QPSK signal using only two nonlinear stages is ach...
All-optical signal processing techniques for phase-shift keyed (PSK) systems were developed theoreti...
The performance of future ultralong-haul communication systems exploiting phase-encoded signals is l...
We investigate and experimentally demonstrate a simple method for phase-preserving amplitude regener...
An optical regeneration scheme based on nondegenerate phase-sensitive amplification in highly nonlin...
Phase-sensitive amplification (PSA), which is produced by degenerate four-wave mixing (FWM) in a ran...
All-optical phase-preserving amplitude regeneration is an effective method to reduce nonlinear phase...
We propose and numerically verify a scheme of phase-sensitive amplifier (PSA) using four-wave mixing...
Frequency-shift-free all-optical amplitude regenerators based on fiber-four-wave mixing were investi...