Current optical coherent transponders technology is driving data rates towards 1 Tb/s/λ and beyond. This trend requires both high-performance coded modulation schemes and efficient implementation of the forward-error-correction (FEC) decoder. A possible solution to this problem is combining advanced multidimensional modulation formats with low-complexity hybrid HD/SD FEC decoders. Following this rationale, in this paper we combine two recently introduced coded modulation techniques: the geometrically-shaped 4D-64 polarization ring-switched and the soft-aided bit-marking-scaled reliability decoder. This joint scheme enabled us to experimentally demonstrate the transmission of 11×218 Gbit/s channels over transatlantic distances at 5.2 bit/4D-...
The advent of the Internet not only changed the communication methods significantly, but also the li...
The recently introduced 4D 64-ary polarisation-ring-switching format is investigated in dispersion-m...
In this paper we carry out a joint optimization of probabilistic (PS) and geometric shaping (GS) for...
Current optical coherent transponders technology is driving data rates towards 1 Tb/s/λ and beyond. ...
Current optical coherent transponders technology is driving data rates towards 1 Tb/s/{\lambda}and b...
Using a novel geometrically-shaped four-dimensional modulation format, we transmitted 11x200 Gbit/s ...
Coded modulation (CM) is the combination of forward error correction (FEC) and multilevel constellat...
Coded modulation (CM) is the combination of forward error correction (FEC) and multilevel constellat...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
Geometrically shaped (GS) 8-, 16, and 32-ary modulation formats are investigated for use in coherent...
The FEC limit paradigm is the prevalent practice for designing optical communication systems to atta...
A comprehensive study of the coded performance of long-haul spectrally-efficient WDM optical fiber t...
Coded modulation (CM), a combination of forward error correction (FEC) and high order modulation for...
The advent of the Internet not only changed the communication methods significantly, but also the li...
The recently introduced 4D 64-ary polarisation-ring-switching format is investigated in dispersion-m...
In this paper we carry out a joint optimization of probabilistic (PS) and geometric shaping (GS) for...
Current optical coherent transponders technology is driving data rates towards 1 Tb/s/λ and beyond. ...
Current optical coherent transponders technology is driving data rates towards 1 Tb/s/{\lambda}and b...
Using a novel geometrically-shaped four-dimensional modulation format, we transmitted 11x200 Gbit/s ...
Coded modulation (CM) is the combination of forward error correction (FEC) and multilevel constellat...
Coded modulation (CM) is the combination of forward error correction (FEC) and multilevel constellat...
Soft forward error correction with higher-order modulations is often implemented in practice via the...
Geometrically shaped (GS) 8-, 16, and 32-ary modulation formats are investigated for use in coherent...
The FEC limit paradigm is the prevalent practice for designing optical communication systems to atta...
A comprehensive study of the coded performance of long-haul spectrally-efficient WDM optical fiber t...
Coded modulation (CM), a combination of forward error correction (FEC) and high order modulation for...
The advent of the Internet not only changed the communication methods significantly, but also the li...
The recently introduced 4D 64-ary polarisation-ring-switching format is investigated in dispersion-m...
In this paper we carry out a joint optimization of probabilistic (PS) and geometric shaping (GS) for...