Claims
- 1. A single-mode optical fiber comprising a core region having a refractive index of n1 and a cladding region disposed around the periphery of said core region and having a refractive index of n2 to satisfy n2<n1,
wherein a relative index difference in each part is determined with respect to the refractive index n2 of said cladding region, and a relative index difference of said core region is defined as Δn, wherein in an interfacial region with a continuously changing index profile near a boundary between said core region and said cladding region, for a domain in which a relative index difference varies from 0.8×Δn to 0.3×Δn, a change rate in relative index difference (0.5×Δn)/(d/r) normalized by a core radius r, where d is a thickness of said domain in a direction along a fiber diameter, and 0.5×Δn is a relative index difference change, is not less than 0.4% nor more than 4.0%.
- 2. A single-mode optical fiber according to claim 1, wherein said change rate in relative index difference is not less than 1.0% nor more than 4.0%.
- 3. A single-mode optical fiber according to claim 1, wherein said change rate in relative index difference is not less than 2.0% nor more than 4.0%.
- 4. A single-mode optical fiber comprising an inner core region having a refractive index of n1, an outer core region disposed around the periphery of said inner core region and having a refractive index of n2 to satisfy n2<n1, and a cladding region disposed around the periphery of said outer core region,
wherein a relative index difference in each part is determined with respect to the refractive index n2 of said outer core region, and a relative index difference of said inner core region is defined as Δn, wherein in an interfacial region with a continuously changing index profile near a boundary between said inner core region and said outer core region, for a domain in which a relative index difference varies from 0.8×Δn to 0.3×Δn, a change rate in relative index difference (0.5×Δn)/(d/r) normalized by an inner core radius r, where d is a thickness of said domain in a direction along a fiber diameter, and 0.5×Δn is a relative index difference change, is not less than 0.4% nor more than 4.0%.
- 5. A single-mode optical fiber according to claim 4, wherein said change rate in relative index difference is not less than 1.0% nor more than 4.0%.
- 6. A single-mode optical fiber according to claim 4, wherein said change rate in relative index difference is not less than 2.0% nor more than 4.0%.
- 7. A method of fabricating a single-mode optical fiber comprising a core region having a refractive index of n1 and a cladding region disposed around the periphery of said core region and having a refractive index of n2 to satisfy n2<n1,
said method comprising: a forming step of forming said core region by a VAD method or an OVD method; and a selection step of selecting a transparent glass perform of the single-mode optical fiber including said core region, wherein in said selection step, a relative index difference in each part is determined with respect to the refractive index n2 of said cladding region, and a relative index difference of said core region is defined as Δn, and said transparent glass preform is selected so that in an interfacial region with a continuously changing index profile near a boundary between said core region and said cladding region, for a domain in which a relative index difference varies from 0.8×Δn to 0.3×Δn, a change rate in relative index difference (0.5×Δn)/(d/r) normalized by a core radius r, where d is a thickness of said domain in a direction along a fiber diameter, and 0.5×Δn is a relative index difference change, is not less than 0.4% nor more than 4.0%.
- 8. A method of fabricating a single-mode optical fiber according to claim 7, wherein said selection step comprises a step of selecting said transparent glass preform so that said change rate in relative index difference is not less than 1.0% nor more than 4.0%.
- 9. A method of fabricating a single-mode optical fiber according to claim 7, wherein said selection step comprises a step of selecting said transparent glass preform so that said change rate in relative index difference is not less than 2.0% nor more than 4.0%.
- 10. A method of fabricating a single-mode optical fiber comprising an inner core region having a refractive index of n1, an outer core region disposed around the periphery of said inner core region and having a refractive index of n2 to satisfy n2<n1, and a cladding region disposed around the periphery of said outer core region,
said method comprising: a forming step of forming said inner core region by a VAD method or an OVD method; and a selection step of selecting a transparent glass preform of the single-mode optical fiber including said inner core region, wherein in said selection step, a relative index difference in each part is determined with respect to the refractive index n2 of said outer core region, and a relative index difference of said inner core region is defined as Δn, and said transparent glass preform is selected so that in an interfacial region with a continuously changing index profile near a boundary between said inner core region and said outer core region, for a domain in which a relative index difference varies from 0.8×Δn to 0.3×Δn, a change rate in relative index difference (0.5×Δn)/(d/r) normalized by an inner core radius r, where d is a thickness of said domain in a direction along a fiber diameter, and 0.5×Δn is a relative index difference change, is not less than 0.4% nor more than 4.0%.
- 11. A method of fabricating a single-mode optical fiber according to claim 10, wherein said selection step comprises a step of selecting said transparent glass preform so that said change rate in relative index difference is not less than 1.0% nor more than 4.0%.
- 12. A method of fabricating a single-mode optical fiber according to claim 10, wherein said selection step comprises a step of selecting said transparent glass preform so that said change rate in relative index difference is not less than 2.0% nor more than 4.0%.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10/312240 |
Nov 1998 |
JP |
|
RELATED APPLICATION
[0001] This is a continuation-in-part application of application Ser. No. PCT/JP99/06040 filed on Oct. 29, 1999, now pending.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/JP99/06040 |
Oct 1999 |
US |
Child |
09845301 |
May 2001 |
US |