We demonstrate unrepeatered transmission of 10 × 400-Gb/s PM-16QAM Nyquist wavelength-division multiplexing (WDM) dual-carrier superchannels (75-GHz flexigrid) at the SE = 5.33 b/s/Hz, where each superchannel is coherently detected by a single wideband receiver. A 350-km transmission is achieved by using optimized amplification map to efficiently design remote optically pumped amplifier and hybrid amplifiers. Additional digital domain nonlinear compensation allows to increase the transmission distance up to 370 km282022892292FINANCIADORA DE ESTUDOS E PROJETOS - FINEPnão te
We evaluate by simulations the maximum reachable distance of 1 Tbps Superchannels based on 240 Gbps ...
We propose a 400G frequency-hybrid superchannel solution based on three carriers, two edge PM-16QAM,...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...
In order to cope with the foreseeable capacity crunch next-generation optical transmission systems a...
We experimentally demonstrate Nyquist superchannel transmission of 447 Gb/s (8x55.97Gb/s) PDM-64QAM ...
We experimentally demonstrate Nyquist superchannel transmission of 515Gb/s (8×64.4Gb/s) PDM-128QAM o...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
We experimentally demonstrate Nyquist superchannel transmission of 515Gb/s (8x64.4Gb/s) PDM-128QAM o...
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 experimentally demonstrate a PM-16QAM/64QAM triple-carrier 400G superchannel compatible with the...
We generate an ultra-dense 400-Gb/s superchannel by combining four spatially distributed 28-GBd-Nyqu...
We experimentally demonstrate a PM-16QAM/64QAM triple-carrier 400G superchannel compatible with the ...
A 560 Gb/s (7×80 Gb/s Nyquist spaced PDM-16QAM) superchannel achieving 6.95 b/s/Hz spectral efficien...
The monolithic optical frequency comb generators are used to generate constant channel spacing WDM s...
We evaluate by simulations the maximum reachable distance of 1 Tbps Superchannels based on 240 Gbps ...
We propose a 400G frequency-hybrid superchannel solution based on three carriers, two edge PM-16QAM,...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...
In order to cope with the foreseeable capacity crunch next-generation optical transmission systems a...
We experimentally demonstrate Nyquist superchannel transmission of 447 Gb/s (8x55.97Gb/s) PDM-64QAM ...
We experimentally demonstrate Nyquist superchannel transmission of 515Gb/s (8×64.4Gb/s) PDM-128QAM o...
The achievable transmission capacity of conventional optical fibre communication systems is limited ...
We experimentally demonstrate Nyquist superchannel transmission of 515Gb/s (8x64.4Gb/s) PDM-128QAM o...
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 experimentally demonstrate a PM-16QAM/64QAM triple-carrier 400G superchannel compatible with the...
We generate an ultra-dense 400-Gb/s superchannel by combining four spatially distributed 28-GBd-Nyqu...
We experimentally demonstrate a PM-16QAM/64QAM triple-carrier 400G superchannel compatible with the ...
A 560 Gb/s (7×80 Gb/s Nyquist spaced PDM-16QAM) superchannel achieving 6.95 b/s/Hz spectral efficien...
The monolithic optical frequency comb generators are used to generate constant channel spacing WDM s...
We evaluate by simulations the maximum reachable distance of 1 Tbps Superchannels based on 240 Gbps ...
We propose a 400G frequency-hybrid superchannel solution based on three carriers, two edge PM-16QAM,...
We experimentally evaluate flex-grid network upgrade scenarios, employing variable data rates and mo...