Claims
- 1. A single mode optical waveguide fiber comprising:
a core region surrounded by and in contact with a clad layer, wherein the core region and the clad layer each have respective refractive index profiles and are configured to guide light through the waveguide fiber; wherein,
said core region includes at least three segments, a central segment, a first annular segment surrounding the central segment, and a second annular segment surrounding the first annular segment, wherein, each said segment has a respective index profile, inner and outer radius, and relative index selected to provide a waveguide fiber having a total dispersion at 1550 nm in the range of −30 ps/nm-km to −60 ps/nm-km, total dispersion slope at 1550 nm in the range of −0.09 ps/nm2-km to −0.18 ps/nm2-km, and attenuation at 1550 nm less than or equal to 0.30 dB/km.
- 2. The single mode waveguide fiber of claim 1 where the relative index of said central segment, Δ0, is positive, the relative index of said first annular segment, Δ1, is negative, the relative index of said second annular segment, Δ2, is positive, and Δ0>Δ2.
- 3. The single mode waveguide fiber of claim 1 wherein the attenuation at 1550 nm is less than 0.26 dB/km.
- 4. The single mode waveguide fiber of claim 1 wherein:
said central segment has relative index percent in the range of 0.8% to 1.4%; said first annular segment has relative index percent in the range of −0.3% to −0.5%; and, said second annular segment has relative index percent in the range of 0.20% to 0.45%.
- 5. The single mode waveguide fiber of claim 4 wherein:
said central segment has inner radius zero and outer radius, ro, in the range 1.8 μm to 3.0 μm; said first annular segment has inner radius ro and outer radius in the range ro+1.5 μm to ro+3.0 μm; and said second annular segment has a center radius in the range 4.5 μm to 10 μm and a width, measured between two points defined by the intersection of the second annular segment refractive index profile with a horizontal line drawn at the half relative index percent value of the second annular segment refractive index profile, in the range of 0.3 μm to 4.0 μm.
- 6. The single mode waveguide fiber of claim 1 or 5 wherein said central segment has a centerline and includes a first portion, beginning at the centerline, having a refractive index higher than that of SiO2, and a second portion located between the first portion and said first annular region comprising SiO2, wherein the weight percent SiO2 of the second portion is greater than or equal to 90%.
- 7. The single mode waveguide fiber of claim 6 wherein the second portion has a thickness not greater than 1.5 μm.
- 8. The single mode waveguide fiber of claim 1 or 5 wherein said second annular segment includes a flattened portion beginning at the outer radius of said first annular segment and extending outward to a point at which the relative index of said second annular portion begins to increase.
- 9. The single mode waveguide fiber of claim 8 wherein the flattened portion has a thickness in the range of 0 to 5.0 μm.
- 10. The single mode optical waveguide fiber of claim 9 wherein the flattened portion is surrounded by a rounded step index portion.
- 11. The single mode waveguide fiber of claim 1 or 5 wherein the portion of said clad layer adjacent said second annular region has a refractive index less than that of SiO2.
- 12. The single mode waveguide fiber of claim 11 wherein the portion of said clad layer having a refractive index less than that of SiO2 has a thickness no greater than 20 μm.
- 13. A telecommunications link comprising:
a transmitter for generating light signals; a receiver for receiving the light signals; at least two lengths of optical waveguide fiber optically joined in series to form a link length, the link length having a first end optically coupled to said transmitter and a second end optically coupled to said receiver to transport the light signals therebetween; wherein, a first one of said at least two lengths of optical fiber has a positive total dispersion and a positive total dispersion slope, and a second one of said at least two lengths has a negative total dispersion and negative total dispersion slope, wherein, the first and second lengths are selected such that said link has a total dispersion of magnitude less than 10 ps/nm-km, and a total dispersion slope of magnitude less than 0.01 ps/nm2-km, over a pre-selected wavelength range.
- 14. The telecommunications link of claim 13 wherein the pre-selected wavelength range is 1280 nm to 1650 nm.
- 15. The telecommunications link of claim 13 wherein the pre-selected wavelength range is 1500 nm to 1650 nm.
- 16. The telecommunications link of claim 13 wherein the first one of the at least two lengths is longer than the second one of at least two lengths.
- 17. The telecommunications link of claim 16 wherein the first one of the at least two lengths and the second one of the at least two lengths are present in the link in a ratio in the range from 1:1 to 3:1.
- 18. The telecommunications link of claim 13 wherein at 1550 nm the total dispersion of the first one of the at least two lengths is in the range of 8 ps/nm-km to 25 ps/nm-km and the total dispersion slope is in the range of 0.05 ps/nm2-km to 0.085 ps/nm2-km.
- 19. The telecommunications link of claim 18 wherein at 1550 nm the total dispersion of the second length of the at least two lengths is in the range of −30 ps/nm-km to −60 ps/nm-km and the total dispersion slope is in the range of −0.09 ps/nm2-km to −0.18 ps/nm2-km.
- 20. The telecommunications link of claim 19 wherein the link length is not less than 40 km, the pre-selected wavelength range is 1500 nm to 1650 nm, the total dispersion magnitude over the range 1500 nm to 1650 nm is less than 4 ps/nm-km, and the total dispersion slope magnitude over the wavelength range 1500 nm to 1650 nm is less than 0.01 ps/nm2-km.
- 21. The telecommunications link of claim 20 wherein the total dispersion slope magnitude of the link over the range 1500 nm to 1650 nm is less than 0.005 ps/nm2-km.
- 22. The telecommunications link of claim 20 wherein the total dispersion of said link is negative.
- 23. The telecommunications link of claim 13 wherein the first one of said at least two lengths is optically coupled to the transmitter.
- 24. The telecommunications link of claim 23 further including a third length of waveguide fiber having positive total dispersion and positive total dispersion slope, wherein said third length is optically coupled to the receiver.
Parent Case Info
[0001] This application claims priority to and the benefit of U.S. Provisional Patent Application No. 60/193,080 filed Mar. 30, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60193080 |
Mar 2000 |
US |