Chinese Journal of Lasers, Volume. 32, Issue 4, 529(2005)
Experimental Investigation of 40 Gb/s Transmission Based on 10 Gb/s Transmission Links
[1] [1] T. Hirooka, M. J. Ablowitz. Analysis of timing and amplitude jitter due to intrachannel dispersion-managed pulse interactions[J]. IEEE Photon. Technol. Lett., 2002, 14(5): 633~635
[2] [2] R. I. Killey, H. J. Thiele, V. Mikhailov. Reduction of intrachannel nonlinear distortion in 40-Gb/s based WDM transmission over standard fiber[J]. IEEE Photon. Technol. Lett., 2000, 12(12): 1624~1626
[3] [3] A. Mecozzi, C. B. Clausen, M. Shtaif. Analysis of intrachannel nonlinear effects in highly dispersed optical pulse transmission[J]. IEEE Photon. Technol. Lett., 2000, 12(4): 392~394
[4] [4] Y. Su, G. Raybon, L. K. Wickham et al.. 40-Gb/s transmission over 2000 km of nonzero-dispersion fiber using 100-km amplifier spacing [C]. OFC 2002, 2002. 609~611
[5] [5] Y. Miyamoto, A. Hirano, K. Yonenaga et al.. 320 Gbit/s (8×40 Gbit/s) WDM transmission over 367 km with 120 km repeater spacing using carrier-suppressed return-to-zero format[J]. Electron. Lett., 1999, 35(23): 2041~2042
[6] [6] J-X. Cai, M. Nissov, C. R. Davidson et al.. Ultra long-haul high-speed transmission [C]. ECOC 2002, 2002. 10.1.1
[7] [7] B. Bakhshi, M. Vaa, E. A. Golvchenko et al.. Comparison of CRZ, RZ and NRZ modulation formats in a 64×12.3 Gb/s WDM transmission experiment over 9000 km[C]. OFC 2001, 2001. WF4-1
[8] [8] B. Dany, O. Leclerc, F. Neddam et al.. Optimization of 40 Gbit/s dispersion maps for long-haul WDM transmissions with up to 0.4 bit/(s Hz) spectral efficiency[C]. OFC 2001, 2001. TuN5-1
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Experimental Investigation of 40 Gb/s Transmission Based on 10 Gb/s Transmission Links[J]. Chinese Journal of Lasers, 2005, 32(4): 529