We present a scheme of frequency-degenerate mid-span spectral inversion (MSSI) for nonlinearity compensation in fiber-optic transmission systems. The spectral inversion is obtained by using counter-propagating dual pump four-wave mixing in a semiconductor optical amplifier (SOA). Frequency-degeneracy between signal and conjugate is achieved by keeping two pump frequencies symmetrical about the signal frequency. We simulate the performance of MSSI for nonlinearity compensation by scrutinizing the improvement of the Q-factor of a 200 Gbps QPSK signal transmitted over a standard single mode fiber, as a function of launch power for different span lengths and number of spans. We demonstrate a 7.5 dB improvement in the input power dynamic range a...
Digital back-propagation (DBP) has recently been proposed for the comprehensive compensation of chan...
In this paper, we demonstrate a novel fiber nonlinearity compensation technique for coherent optical...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...
We present a scheme of frequency-degenerate mid-span spectral inversion (MSSI) for nonlinearity comp...
We propose and numerically verify a scheme of frequency-shift free mid-span spectral inversion (MSSI...
Optical fiber communication systems have become the backbone of today’s communication networks due t...
Nonlinear compensation using optical phase conjugation (OPC) have been considered a promising techni...
We discuss recent progress on the use of optical and digital phase conjugation techniques for nonlin...
We present nonlinear impairment mitigation of wavelength division multiplexed (WDM) signals, through...
We introduce a closed form equation, validated by simulations and experimental results, that predict...
Compensation of the detrimental impacts of nonlinearity on long-haul wavelength division multiplexed...
We propose and numerically verify a novel scheme of frequency-shift free optical phase conjugation b...
Digital back-propagation (DBP) has recently been proposed for the comprehensive compensation of chan...
In this paper, we demonstrate a novel fiber nonlinearity compensation technique for coherent optical...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...
We present a scheme of frequency-degenerate mid-span spectral inversion (MSSI) for nonlinearity comp...
We propose and numerically verify a scheme of frequency-shift free mid-span spectral inversion (MSSI...
Optical fiber communication systems have become the backbone of today’s communication networks due t...
Nonlinear compensation using optical phase conjugation (OPC) have been considered a promising techni...
We discuss recent progress on the use of optical and digital phase conjugation techniques for nonlin...
We present nonlinear impairment mitigation of wavelength division multiplexed (WDM) signals, through...
We introduce a closed form equation, validated by simulations and experimental results, that predict...
Compensation of the detrimental impacts of nonlinearity on long-haul wavelength division multiplexed...
We propose and numerically verify a novel scheme of frequency-shift free optical phase conjugation b...
Digital back-propagation (DBP) has recently been proposed for the comprehensive compensation of chan...
In this paper, we demonstrate a novel fiber nonlinearity compensation technique for coherent optical...
We show that optical and electrical phase conjugation enable effective nonlinear compensation, The i...