The achievable transmission capacity of conventional optical fibre communication systems is limited by nonlinear distortions due to the Kerr effect and the difficulty in modulating the optical field to effectively use the available fibre bandwidth. In order to achieve a high information spectral density (ISD), while simultaneously maintaining transmission reach, multi-channel fibre nonlinearity compensation and spectrally efficient data encoding must be utilised. In this work, we use a single coherent super-receiver to simultaneously receive a DP-16QAM super-channel, consisting of seven spectrally shaped 10GBd sub-carriers spaced at the Nyquist frequency. Effective nonlinearity mitigation is achieved using multi-channel digital back-propaga...
We describe an experimental investigation of the performance of a DP-16QAM Nyquist WDM transmission ...
International audienceWe experimentally investigate Kerr nonlinearity mitigation of a 28-GBd polariz...
We experimentally demonstrate performance enhancements enabled by weighted digital back propagation ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
Nyquist-spaced transmission and digital signal processing have proved effective in maximising the sp...
We investigate electronic mitigation of linear and non-linear fibre impairments and compare various ...
Optical fibre networks form the backbone of the global communication infrastructure but are currentl...
The relationship between modulation format and the performance of multi-channel digital back-propaga...
The performance of digital backpropagation (DBP) equalization when applied over multiple channels to...
The performance of unrepeatered transmission of a seven Nyquist-spaced 10 GBd PDM-16QAM superchannel...
We assess the effectiveness of digital backpropagation algorithm for a 1.2 Tb/s high spectral effici...
Coherent optical fiber systems can achieve long-distance, large-capacity and high data-rate transmis...
We report the performance of coherently-detected nine-channel WDM transmission over high dispersion ...
We describe an experimental investigation of the performance of a DP-16QAM Nyquist WDM transmission ...
International audienceWe experimentally investigate Kerr nonlinearity mitigation of a 28-GBd polariz...
We experimentally demonstrate performance enhancements enabled by weighted digital back propagation ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
Nyquist-spaced transmission and digital signal processing have proved effective in maximising the sp...
We investigate electronic mitigation of linear and non-linear fibre impairments and compare various ...
Optical fibre networks form the backbone of the global communication infrastructure but are currentl...
The relationship between modulation format and the performance of multi-channel digital back-propaga...
The performance of digital backpropagation (DBP) equalization when applied over multiple channels to...
The performance of unrepeatered transmission of a seven Nyquist-spaced 10 GBd PDM-16QAM superchannel...
We assess the effectiveness of digital backpropagation algorithm for a 1.2 Tb/s high spectral effici...
Coherent optical fiber systems can achieve long-distance, large-capacity and high data-rate transmis...
We report the performance of coherently-detected nine-channel WDM transmission over high dispersion ...
We describe an experimental investigation of the performance of a DP-16QAM Nyquist WDM transmission ...
International audienceWe experimentally investigate Kerr nonlinearity mitigation of a 28-GBd polariz...
We experimentally demonstrate performance enhancements enabled by weighted digital back propagation ...