Optical communication line with dispersion intrachannel...

Optical waveguides – With optical coupler – Plural

Reexamination Certificate

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C385S015000, C385S123000, C359S341100

Reexamination Certificate

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07324721

ABSTRACT:
An optical communication line of a communication system has a first processing station and an amplifying station. The line has a first optical connection having at least partially compensated accumulated dispersion and is placed between the first processing station and the amplifying station. A second optical connection having at least partially compensated accumulated dispersion is connected to the output of the amplifying station. Portions of optical fiber leaving the processing station and the amplifying station are associated to respective first order chromatic dispersions which are of opposite signs and have absolute values lower than or equal to 13 ps2/Km.

REFERENCES:
patent: 6480658 (2002-11-01), Naito et al.
patent: 1 263 155 (2002-12-01), None
Kumar et al.; “Intrachannel Nonlinear Penalties in Dispersion-Managed Transmission Systems”; IEEE Journal of Selected Topics in Quantum Electronics, vol. 8, No. 3, pp. 626-631, (2002).
Zou et al.; “Limitations in 10 Gb/s WDM Optical-Fiber Transmission When Using a Variety of Fiber Types to Manage Dispersion and Nonlinearities”; Journal of Lightwave Technology, vol. 14, No. 6, pp. 1144-1152, (1996).
Park et al.; “Intra-Channel Nonlinearities and Dispersion-Management in Highly Dispersed Transmission”; IEICE Trans. Commun., vol. E86-B, No. 4, pp. 1205-1211, (2003).
G. Agrawal; “Raman-Gain Spectrum”, Nonlinear Fiber Optics, Academic Press Inc., pp. 317-319, (1995).
M. Zitelli et al.; “Single-Channel Transmission in Dispersion Management Links in Conditions of Very Strong Pulse Broadening: Application to 40 Gb/s Signal on Step-Index Fibers”, Journal of Lightwave Technology, vol. 17, No. 12. pp. 2498-2505, (1999).
T. Tsuzaki et al.; “Broadband Discrete Fiber Raman Amplifier with High Differential Gain Operation Over 1.65um-band”, OFC2001, MA3-1, 3 pages, (2001).
A. Mecozzi et al.; “Analysis of Intrachannel Nonlinear Effects in Highly Dispersed Optical Pulse Transmission”, IEEE Photonics Technology Letters, vol. 12, No. 4, pp. 392-394, (2000).

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