Claims
- 1. An optical transmission line comprising:a first optical fiber having a first dispersion value of 6 to 14 ps/nm/km at a wavelength of 1550 nm; a second optical fiber having a second dispersion value of −14 to −6 ps/nm/km at the wavelength of 1550 nm; said first optical fiber is connected in series to said second optical fiber; and a dispersion slope of said first optical fiber has an opposite sign relative to a dispersion slope of said second optical fiber in a wavelength range of 1530 nm to 1570 nm, wherein said second optical fiber has at the wavelength of 1550 nm: a transmission loss of 0.30 dB/km or less, a polarization mode dispersion value of 0.15 ps/km1/2 or less, a bending loss of 10 dB/m or less in a bending diameter of 20 mm, and a mode field diameter of 5.5 μm or more.
- 2. The optical transmission line according to claim 1, wherein said first optical fiber has at the wavelength of 1550 nm:a transmission loss of 0.25 dB/km or less, a polarization mode dispersion value of 0.15 ps/km1/2 or less, a bending loss of 10 dB/m or less in a bending diameter of 20 mm, and a mode field diameter of 9.5 μm or more.
- 3. The optical transmission line according to claim 2, wherein said first optical fiber is a single-peak type optical fiber comprising:a core, and a cladding surrounding said core, wherein said core has an α-profile.
- 4. The optical transmission line according to claim 2, wherein said first optical fiber is a dual core optical fiber comprising:a center core, a side core surrounding said center core and having a refractive index smaller than a refractive index of said center core, and a cladding surrounding said side core and having a refractive index smaller than said refractive index of said side core.
- 5. The optical transmission line according to claim 2, wherein said first optical fiber is a depressed center core optical fiber comprising:a center core, a side core surrounding said center core and having a refractive index larger than a refractive index of said center core, and a cladding surrounding said side core and having a refractive index smaller than said refractive index of said side core and larger than said refractive index of said center core.
- 6. The optical transmission line according to claim 2, wherein said first optical fiber comprises:a center core, a first side core surrounding said center core, a second side core surrounding said first side core, and a cladding surrounding said second side core such that a relation Δ2>Δ3>Δ1 is satisfied, where a relative refractive index difference of said center core with said cladding is Δ1, a relative refractive index difference of said first side core with said cladding is Δ2, and a relative refractive index difference of said second side core with said cladding is Δ3.
- 7. The optical transmission line according to claim 1, wherein said first optical fiber is a single-peak type optical fiber comprising:a core, and a cladding surrounding said core, wherein said core has an α-profile.
- 8. The optical transmission line according to claim 1, wherein said first optical fiber is a dual core optical fiber comprising:a center core, a side core surrounding said center core and having a refractive index smaller than a refractive index of said center core, and a cladding surrounding said side core and having a refractive index smaller than said refractive index of said side core.
- 9. The optical transmission line according to claim 1, wherein said first optical fiber is a depressed center core optical fiber comprising:a center core, a side core surrounding said center core and having a refractive index larger than a refractive index of said center core, and a cladding surrounding said side core and having a refractive index smaller than said refractive index of said side core and larger than said refractive index of said center core.
- 10. The optical transmission line according to claim 1, wherein said first optical fiber comprises:a center core, a first side core surrounding said center core, a second side core surrounding said first side core, and a cladding surrounding said second side core such that a relation Δ2>Δ3>Δ1 is satisfied, where a relative refractive index difference of said center core with said cladding is Δ1, a relative refractive index difference of said first side core with said cladding is Δ2, and a relative refractive index difference of said second side core with said cladding is Δ3.
- 11. The optical transmission line according to claim 1, wherein said second optical fiber is a W-shape optical fiber comprising:a center core, a side core surrounding said center core and having a refractive index smaller than a refractive index of said center core, a cladding surrounding said side core and having a refractive index larger than said refractive index of said side core and smaller than said refractive index of said center core.
- 12. The optical transmission line according to claim 1, wherein said second optical fiber comprises:a center core, a first side core surrounding said center core, a second side core surrounding said first side core, and a cladding surrounding said second side core such that a relationship Δ1>Δ3>Δ2 is satisfied, where a relative refractive index difference of said center core with said cladding is Δ1, a relative refractive index difference of said first side core with said cladding is Δ2, and a relative refractive index difference of said second side core with said cladding is Δ3.
- 13. An optical transmission line comprising:a first optical fiber and a second optical fiber; said first optical fiber has at a wavelength of 1550 nm: a dispersion value of 6 to 14 ps/nm/km, a transmission loss of 0.25 dB/km or less, a polarization mode dispersion value of 0.15 ps/km1/2 or less, a bending loss of 10 dB/m or less in a bending diameter of 20 mm, and a mode field diameter of 9.5 μm or more, and said second optical fiber has at the wavelength of 1550 nm: a dispersion value of −14 to −6 ps/nm/km, a transmission loss of 0.30 dB/km or less, a polarization mode dispersion value of 0.15 ps/km1/2 or less, a bending loss of 10 dB/m or less in the bending diameter of 20 mm, and a mode field diameter of 5.5 μm or more.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-181453 |
Jun 1999 |
JP |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a Continuation of U.S. patent application Ser. No. 09/794,619, filed Feb. 28, 2001 now U.S. Pat. No. 6,724,966, which is a Continuation of PCT Application No. PCT/JP00/04206, filed Jun. 27, 2000, and claims priority to Japanese Patent Application No. 11-181453, filed Jun. 28, 1999.
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Entry |
K. Mukasa, et al., 23rd European Conference on Optical Communications, vol. 1, No. 448, pps. 127-130, “Novel Network Fiber To Manage Dispersion At 1.55μm With Combination of 1.3μm Zero Disperion Single Mode Fiber,” Sep. 22-25, 1997. |
Continuations (2)
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Number |
Date |
Country |
Parent |
09/794619 |
Feb 2001 |
US |
Child |
10/781719 |
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US |
Parent |
PCT/JP00/04206 |
Jun 2000 |
US |
Child |
09/794619 |
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US |