The Experts below are selected from a list of 4680 Experts worldwide ranked by ideXlab platform
S. Stulz - One of the best experts on this subject based on the ideXlab platform.
-
3.28-Tb/s transmission over 3 x 100 km of nonzero-dispersion fiber using dual C- and L-band distributed Raman amplification
IEEE Photonics Technology Letters, 2000Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, S. Cabot, S. StulzAbstract:A Record Aggregate capacity of 3.28-Tb/s (82/spl times/40 Gb/s NRZ) is transmitted over 3/spl times/100 km of nonzero-dispersion fiber. The system incorporates for the first time dual C- and L-band transmission and distributed Raman amplification in addition to the 40-Gb/s NRZ line rate.
John M. Fini - One of the best experts on this subject based on the ideXlab platform.
-
1.12-Tb/s 32-QAM-OFDM superchannel with 8.6-b/s/Hz intrachannel spectral efficiency and space-division multiplexed transmission with 60-b/s/Hz Aggregate spectral efficiency.
Optics express, 2011Co-Authors: Xiang Liu, Sethumadhavan Chandrasekhar, Xi Chen, Peter J. Winzer, Y. Pan, Thierry F. Taunay, Benyuan Zhu, M. Fishteyn, M. F. Yan, John M. FiniAbstract:We demonstrate the generation of a 1.12-Tb/s superchannel based on coherent optical orthogonal frequency-division multiplexing with polarization-division multiplexed 32-QAM subcarriers, achieving a net intrachannel-spectral-efficiency (ISE) of 8.6 b/s/Hz. Using space-division multiplexing (SDM), we transmit this superchannel over a 76.8-km low-crosstalk multi-core-fiber (MCF) with a Record Aggregate ISE of 60 b/s/Hz per fiber. We also discuss the impact of core-to-core crosstalk on transmission performance, as well as future perspectives of MCF-based SDM transmission.
T.n. Nielsen - One of the best experts on this subject based on the ideXlab platform.
-
3.28-Tb/s transmission over 3 x 100 km of nonzero-dispersion fiber using dual C- and L-band distributed Raman amplification
IEEE Photonics Technology Letters, 2000Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, S. Cabot, S. StulzAbstract:A Record Aggregate capacity of 3.28-Tb/s (82/spl times/40 Gb/s NRZ) is transmitted over 3/spl times/100 km of nonzero-dispersion fiber. The system incorporates for the first time dual C- and L-band transmission and distributed Raman amplification in addition to the 40-Gb/s NRZ line rate.
-
3.28 Tb/s (82/spl times/40 Gb/s) transmission over 3/spl times/100 km nonzero-dispersion fiber using dual C- and L-band hybrid Raman/erbium doped inline amplifiers
Optical Fiber Communication Conference. Technical Digest Postconference Edition. Trends in Optics and Photonics Vol.37 (IEEE Cat. No. 00CH37079), 1Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, Thomas Andrew Strasser, S. CabotAbstract:We demonstrate transmission of a Record Aggregate capacity of 3.28 Tb/s (82/spl times/40 Gb/s PRBS 2/sup 31/-1 NRZ) over 3/spl times/100 km of a demonstration TrueWave(R) fiber with very low dispersion slope. The system for the first time incorporate dual C- and L-band transmission and distributed Raman amplification in addition to the 40 Gb/s line rate.
S. Cabot - One of the best experts on this subject based on the ideXlab platform.
-
3.28-Tb/s transmission over 3 x 100 km of nonzero-dispersion fiber using dual C- and L-band distributed Raman amplification
IEEE Photonics Technology Letters, 2000Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, S. Cabot, S. StulzAbstract:A Record Aggregate capacity of 3.28-Tb/s (82/spl times/40 Gb/s NRZ) is transmitted over 3/spl times/100 km of nonzero-dispersion fiber. The system incorporates for the first time dual C- and L-band transmission and distributed Raman amplification in addition to the 40-Gb/s NRZ line rate.
-
3.28 Tb/s (82/spl times/40 Gb/s) transmission over 3/spl times/100 km nonzero-dispersion fiber using dual C- and L-band hybrid Raman/erbium doped inline amplifiers
Optical Fiber Communication Conference. Technical Digest Postconference Edition. Trends in Optics and Photonics Vol.37 (IEEE Cat. No. 00CH37079), 1Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, Thomas Andrew Strasser, S. CabotAbstract:We demonstrate transmission of a Record Aggregate capacity of 3.28 Tb/s (82/spl times/40 Gb/s PRBS 2/sup 31/-1 NRZ) over 3/spl times/100 km of a demonstration TrueWave(R) fiber with very low dispersion slope. The system for the first time incorporate dual C- and L-band transmission and distributed Raman amplification in addition to the 40 Gb/s line rate.
Andrew John Stentz - One of the best experts on this subject based on the ideXlab platform.
-
3.28-Tb/s transmission over 3 x 100 km of nonzero-dispersion fiber using dual C- and L-band distributed Raman amplification
IEEE Photonics Technology Letters, 2000Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, S. Cabot, S. StulzAbstract:A Record Aggregate capacity of 3.28-Tb/s (82/spl times/40 Gb/s NRZ) is transmitted over 3/spl times/100 km of nonzero-dispersion fiber. The system incorporates for the first time dual C- and L-band transmission and distributed Raman amplification in addition to the 40-Gb/s NRZ line rate.
-
3.28 Tb/s (82/spl times/40 Gb/s) transmission over 3/spl times/100 km nonzero-dispersion fiber using dual C- and L-band hybrid Raman/erbium doped inline amplifiers
Optical Fiber Communication Conference. Technical Digest Postconference Edition. Trends in Optics and Photonics Vol.37 (IEEE Cat. No. 00CH37079), 1Co-Authors: T.n. Nielsen, Karsten Rottwitt, Andrew John Stentz, D.s. Vengsarkar, Z.j. Chen, Per Bang Hansen, J.h. Park, K.s. Feder, Thomas Andrew Strasser, S. CabotAbstract:We demonstrate transmission of a Record Aggregate capacity of 3.28 Tb/s (82/spl times/40 Gb/s PRBS 2/sup 31/-1 NRZ) over 3/spl times/100 km of a demonstration TrueWave(R) fiber with very low dispersion slope. The system for the first time incorporate dual C- and L-band transmission and distributed Raman amplification in addition to the 40 Gb/s line rate.