Experimental results are presented confirming that optical-phase conjugation in a semiconductor-laser amplifier has the potential to compensate for the interplay of chromatic dispersion and nonlinear self-phase modulation, thereby enabling high-capacity high-power transmission over standard singlemode fibres
In this paper, we review the recent progress in transmission experiments by employing optical phase ...
We experimentally investigate a long-distance, high-bit-rate transmission system which combines opti...
The temporal effect of optical phase conjugation in dispersion-shifted fiber is studied numerically....
Optical-phase conjugation in a semiconductor-laser amplifier has the potential to compensate for the...
This article is intended as a guide to the techniques for nonlinearity compensation in a fiber-optic...
Electronic phase conjugation is proposed for nonlinearity compensation in fiber communications. Cohe...
\u3cp\u3eIn this paper, WDM transmission experiments are discussed showing simultaneous compensation...
We review transmission experiments over installed fibre links that use optical phase conjugation for...
As the demand for high data rates in optical fibre communication systems grows at an unprecedented s...
One of the main causes of signal degradation in high-bit-rate transmission systems is the interplay ...
We report the first demonstration of high bitrate, polarisation insensitive optical phase conjugatio...
We demonstrate a record throughput of 5.7 Tbit/s employing an optical phase conjugator to jointly co...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Abstract—Nonlinear phase noise (Gordon–Mollenauer phase noise) can limit the transmission distance f...
In this paper, we review the recent progress in transmission experiments by employing optical phase ...
We experimentally investigate a long-distance, high-bit-rate transmission system which combines opti...
The temporal effect of optical phase conjugation in dispersion-shifted fiber is studied numerically....
Optical-phase conjugation in a semiconductor-laser amplifier has the potential to compensate for the...
This article is intended as a guide to the techniques for nonlinearity compensation in a fiber-optic...
Electronic phase conjugation is proposed for nonlinearity compensation in fiber communications. Cohe...
\u3cp\u3eIn this paper, WDM transmission experiments are discussed showing simultaneous compensation...
We review transmission experiments over installed fibre links that use optical phase conjugation for...
As the demand for high data rates in optical fibre communication systems grows at an unprecedented s...
One of the main causes of signal degradation in high-bit-rate transmission systems is the interplay ...
We report the first demonstration of high bitrate, polarisation insensitive optical phase conjugatio...
We demonstrate a record throughput of 5.7 Tbit/s employing an optical phase conjugator to jointly co...
Nonlinear phase noise (Gordon-Mollenauer phase noise) can limit the transmission distance for phase-...
Abstract—Nonlinear phase noise (Gordon–Mollenauer phase noise) can limit the transmission distance f...
In this paper, we review the recent progress in transmission experiments by employing optical phase ...
We experimentally investigate a long-distance, high-bit-rate transmission system which combines opti...
The temporal effect of optical phase conjugation in dispersion-shifted fiber is studied numerically....