Superchannel transmission spaced at the symbol rate, known as Nyquist spacing, has been demonstrated for effectively maximizing the optical communication channel capacity and spectral efficiency. However, the achievable capacity and reach of transmission systems using advanced modulation formats are affected by fibre nonlinearities and equalization enhanced phase noise (EEPN). Fibre nonlinearities can be effectively compensated using digital back-propagation (DBP). However EEPN which arises from the interaction between laser phase noise and dispersion cannot be efficiently mitigated, and can significantly degrade the performance of transmission systems. Here we report the first investigation of the origin and the impact of EEPN in Nyquist-s...
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...
Signal processing techniques for mitigating intra-channel and inter-channel fiber nonlinearities are...
Superchannel transmission spaced at the symbol rate, known as Nyquist spacing, has been demonstrated...
In digital signal processing (DSP) based coherent optical communication systems, the effect of equal...
Enhanced equalization phase noise (EEPN), generated from the uncompensated dispersion experienced by...
In this work, the performance of high-speed longhaul nonlinear Nyquist-spaced multi-channel coherent...
Nyquist-spaced transmission and digital signal processing have proved effective in maximising the sp...
Equalization enhanced phase noise (EEPN) occurs due to the interplay between laser phase noise and e...
Enhanced equalization phase noise (EEPN), generated from the uncompensated dispersion experienced by...
The relationship between modulation format and the performance of multi-channel digital back-propaga...
The significant influence of equalization enhanced phase noise on the performance of long-haul EDFA-...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
We investigate electronic mitigation of linear and non-linear fibre impairments and compare various ...
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...
Signal processing techniques for mitigating intra-channel and inter-channel fiber nonlinearities are...
Superchannel transmission spaced at the symbol rate, known as Nyquist spacing, has been demonstrated...
In digital signal processing (DSP) based coherent optical communication systems, the effect of equal...
Enhanced equalization phase noise (EEPN), generated from the uncompensated dispersion experienced by...
In this work, the performance of high-speed longhaul nonlinear Nyquist-spaced multi-channel coherent...
Nyquist-spaced transmission and digital signal processing have proved effective in maximising the sp...
Equalization enhanced phase noise (EEPN) occurs due to the interplay between laser phase noise and e...
Enhanced equalization phase noise (EEPN), generated from the uncompensated dispersion experienced by...
The relationship between modulation format and the performance of multi-channel digital back-propaga...
The significant influence of equalization enhanced phase noise on the performance of long-haul EDFA-...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
We investigate electronic mitigation of linear and non-linear fibre impairments and compare various ...
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...
Signal processing techniques for mitigating intra-channel and inter-channel fiber nonlinearities are...