The Experts below are selected from a list of 276 Experts worldwide ranked by ideXlab platform
D S Govan - One of the best experts on this subject based on the ideXlab platform.
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long distance 40 gbit s soliton transmission over standard fiber by use of dispersion management
Optics Letters, 1998Co-Authors: D S Govan, Wladek Forysiak, N J DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
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Long-distance 40-Gbit/s soliton transmission over standard fiber by use of dispersion management
Optics letters, 1998Co-Authors: D S Govan, Wladek Forysiak, Nick DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
N J Doran - One of the best experts on this subject based on the ideXlab platform.
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long distance 40 gbit s soliton transmission over standard fiber by use of dispersion management
Optics Letters, 1998Co-Authors: D S Govan, Wladek Forysiak, N J DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
Nick Doran - One of the best experts on this subject based on the ideXlab platform.
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Long-distance 40-Gbit/s soliton transmission over standard fiber by use of dispersion management
Optics letters, 1998Co-Authors: D S Govan, Wladek Forysiak, Nick DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
Wladek Forysiak - One of the best experts on this subject based on the ideXlab platform.
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long distance 40 gbit s soliton transmission over standard fiber by use of dispersion management
Optics Letters, 1998Co-Authors: D S Govan, Wladek Forysiak, N J DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
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Long-distance 40-Gbit/s soliton transmission over standard fiber by use of dispersion management
Optics letters, 1998Co-Authors: D S Govan, Wladek Forysiak, Nick DoranAbstract:We demonstRate, through numerical simulations, the possibility of transmitting solitonlike pulses over 2000 km of standard fiber at a single-Channel Data Rate of 40 Gbits/s. The system used here employs a novel dispersion map to overcome the large fiber dispersion. The longest transmission distance was achieved with pulses that did not exhibit the enhanced energy normally associated with dispersion management and indeed had lower energy than an equivalent average soliton.
P. Chavarkar - One of the best experts on this subject based on the ideXlab platform.
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40-Channel transmitter and receiver photonic integRated circuits operating at per Channel Data Rate 12.5 Gbit=s
Electronics Letters, 2007Co-Authors: Masaki Kato, R. Nagarajan, Jacco Pleumeekers, Peter W. Evans, A. Chen, Atul Mathur, Andrew Gomperz Dentai, Sheila Hurtt, Damien Lambert, P. ChavarkarAbstract:DemonstRated are 40-Channel transmitter and receiver large-scale photonic integRated circuits operating as a pair at 12.5 Gbit/s.
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40 Channel transmitter and receiver photonic integRated circuits operating at per Channel Data Rate 12 5 gbit s
Electronics Letters, 2007Co-Authors: Masaki Kato, R. Nagarajan, Jacco Pleumeekers, A. Chen, Atul Mathur, Andrew Gomperz Dentai, Sheila Hurtt, Damien Lambert, P Evans, P. ChavarkarAbstract:DemonstRated are 40-Channel transmitter and receiver large-scale photonic integRated circuits operating as a pair at 12.5 Gbit/s.
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single chip 40 Channel inp transmitter photonic integRated circuit capable of aggregate Data Rate of 1 6 tbit s
Electronics Letters, 2006Co-Authors: R. Nagarajan, Masaki Kato, A. Chen, Atul Mathur, Damien Lambert, P. Chavarkar, P Evans, V. Dominic, J Pleumeekers, Mark J. MisseyAbstract:A single-chip 40-Channel dense wavelength division multiplexed, monolithic, InP transmitter photonic integRated circuit capable of operating at per Channel Data Rate of 40 Gbit/s for a combined Data Rate of 1.6 Tbit/s is demonstRated.
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Single-chip 40-Channel InP transmitter photonic integRated circuit capable of aggregate Data Rate of 1.6 Tbit/s
Electronics Letters, 2006Co-Authors: R. Nagarajan, Masaki Kato, Jacco Pleumeekers, Peter W. Evans, A. Chen, Atul Mathur, Damien Lambert, P. Chavarkar, V. Dominic, Mark J. MisseyAbstract:A single-chip 40-Channel dense wavelength division multiplexed, monolithic, InP transmitter photonic integRated circuit capable of operating at per Channel Data Rate of 40 Gbit/s for a combined Data Rate of 1.6 Tbit/s is demonstRated.