Optical fiber and optical transmission line comprising the same

H - Electricity – 04 – B

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H04B 10/135 (2006.01) G02B 6/036 (2006.01) H04B 10/18 (2006.01)

Patent

CA 2370528

An optical fiber having a structure preferable to long-distance transmission of optical signals having different wavelength in the 1530 to 1620 nm wavelength band and an optical transmission line comprising the same are disclosed. The optical transmission line includes one or more first optical fibers and one or more second optical fibers. Each of the first optical fibers has a dispersion of +1.0 to +8.0 ps/nm/km in the 1530 to 1620 nm wavelength band. The difference between the maximum and minimum of the dispersions is 3.0 ps/nm/km or less. Each of the second optical fibers has a dispersion of -1.0 to -8.0 ps/nm/km in the 1530 to 1620 nm wavelength band. The difference between the maximum and minimum of the dispersions is 3.0 ps/nm/km or less. Therefore the difference between the maximum and minimum of the mean dispersion calculated from the lengths and dispersions of the first and second optical fibers of the whole optical transmission line is 2.0 ps/nm/km or less.

Cette invention se rapporte à une fibre optique ayant une structure préférable pour les transmissions longue distance de signaux optiques ayant différentes longueurs d'ondes comprises dans la bande des longueurs d'ondes de 1530 à 1620 mm, ainsi qu'à une ligne de transmission optique comprenant une telle fibre. Cette ligne de transmission optique contient une ou plusieurs premières fibres optiques et une ou plusieurs secondes fibres optiques. Chacune des premières fibres optiques possède une dispersion comprise entre +1,0 et +8,0 ps/nm/km dans la bande des longueurs d'ondes de 1530 à 1620 nm. La différence entre le maximum et le minimum des dispersions est de 3,0 ps/nm/km au maximum. Chacune des secondes fibres optiques possède une dispersion comprise entre -1,0 et -8,0 ps/nm/km dans la bande des longueurs d'ondes de 1530 à 1620 nm. La différence entre le maximum et le minimum des dispersions est de 3,0 ps/nm/km au maximum. La différence entre le maximum et le minimum de la dispersion moyenne calculée à partir des longueurs et des dispersions des première et seconde fibres optiques de toute la ligne de transmission optique est par conséquent de 2,0 ps/nm/km au maximum.

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