IP Library › Granted Patent US 10,983,267
Granted Patent B2
US 10,983,267 · App. 16/269,112 · Granted Apr 20, 2021

Quasi-single-mode optical fiber

Inventors: John David Downie (Painted Post, NY); Ming-Jun Li (Horseheads, NY); William Allen Wood (Painted Post, NY); Aramais Robert Zakharian (Painted Post, NY)
Assignee: Corning Incorporated
G02B6/02019G02B6/03627G02B6/028G02B6/02023G02B6/0281G02B6/02095G02B6/0365
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Quick Facts
Patent No.
US 10,983,267
App. No.
16/269,112
Granted
Apr 20, 2021
Kind
B2
Abstract

A quasi-single-mode (QSM) optical fiber includes a core and a cladding surrounding the core. The core includes a centerline and an outer edge. The cladding includes an interior edge and an exterior edge. The cladding has a cladding outer diameter defined by the exterior edge of the cladding. The cladding outer diameter may be in the range of greater than 170 μm to about 200 μm. The QSM fiber has a cabled cutoff wavelength that is greater than about 1530 nm. The core and the cladding support a fundamental mode LP 01 and a higher-order mode LP 11 . The fundamental mode LP 01 has an effective area A eff>150 μm 2 .

Claims (40)

1. A quasi-single-mode (QSM) optical fiber, comprising:

a core having a centerline and an outer edge; and

a cladding surrounding the core and having an interior edge and an exterior edge, wherein the cladding has a cladding outer diameter defined by the exterior edge of the cladding, wherein the cladding outer diameter is in the range of greater than 170 μm to about 200 μm;

wherein the QSM fiber has a cabled cutoff wavelength that is greater than about 1530 nm;

wherein the QSM fiber has a dispersion slope at 1550 nm of 0.0635 ps/nm 2 .km to 0.0638 ps/nm 2 .km;

wherein the core and the cladding support a fundamental mode LP 01 and a higher-order mode LP 11 , and wherein the fundamental mode LP 01 has an effective area A eff >150 μm 2 .

2. The QSM optical fiber of claim 1 , wherein the core and the cladding have a multi-path interference of less than about −30 dB per 100 km.

3. The QSM optical fiber of claim 1 , wherein the cabled cutoff wavelength is less than about 2000 nm.

4. The QSM optical fiber of claim 1 , wherein the core has a peak refractive index n 0 on the centerline and a refractive index n 1 at the outer edge.

5. The QSM optical fiber of claim 4 , wherein the cladding has an inner annular moat region immediately adjacent the core.

6. The QSM optical fiber of claim 5 , wherein the core and the cladding have a bending loss BL<0.02 dB/turn at 1625 nm and for a bend diameter D B =60 mm.

7. The QSM optical fiber of claim 1 , wherein the cladding further comprises:

a high-index ring that begins at a radius of at least about 40 μm from the centerline of the core, wherein the high-index ring has a refractive index change in the range of at least about 0.0005 to less than about 0.0022.

8. A quasi-single-mode (QSM) optical fiber, comprising:

a core having a centerline and an outer edge; and

a cladding surrounding the core and having an interior edge and an exterior edge;

wherein the QSM fiber has a cabled cutoff wavelength that is greater than about 1530 nm;

wherein the QSM fiber has a MFD at 1550 nm of 15.5 μm;

wherein the core and the cladding support a fundamental mode LP 01 and a higher-order mode LP 11 , and wherein the fundamental mode LP 01 has an effective area A eff >150 μm′, and wherein the core and the cladding have a multi-path interference of less than about −30 dB per 100 km.

9. The QSM optical fiber of claim 8 , further comprising:

a cladding outer diameter defined by the exterior edge of the cladding, wherein the cladding outer diameter is in the range of greater than 170 μm to about 200 μm.

10. The QSM optical fiber of claim 8 , wherein the cabled cutoff wavelength is less than about 2000 nm.

11. The QSM optical fiber of claim 8 , wherein the core has a peak refractive index no on the centerline and a refractive index n 1 at the outer edge.

12. The QSM optical fiber of claim 11 , wherein the cladding has an inner annular moat region immediately adjacent the core.

13. The QSM optical fiber of claim 12 , wherein the core and the cladding have a bending loss BL<0.02 dB/turn at 1625 nm and for a bend diameter D B =60 mm.

14. The QSM optical fiber of claim 8 , wherein the cladding further comprises:

a high-index ring that begins at a radius of at least about 40 μm from the centerline of the core, wherein the high-index ring has a refractive index change in the range of at least about 0.0005 to less than about 0.0022.

15. A quasi-single-mode (QSM) optical fiber, comprising:

a core having a centerline and an outer edge; and

a cladding surrounding the core and having an interior edge and an exterior edge, wherein the cladding has a cladding outer diameter defined by the exterior edge of the cladding, wherein the cladding outer diameter is in the range of greater than 170 μm to about 200 μm;

wherein the fiber has a cabled cutoff wavelength that is greater than about 1530 nm;

wherein the QSM fiber has a dispersion slope at 1550 nm of 0.0635 ps/nm 2 .km to 0.0638 ps/nm 2 .km;

wherein the QSM fiber has a MFD at 1550 nm of 15.5 μm;

wherein the core and the cladding support a fundamental mode LP 01 and a higher-order mode LP 11 , and wherein the fundamental mode LP 01 has an effective area A eff >150 μm 2 , and wherein the core and the cladding have a multi-path interference of less than about −30 dB per 100 km.

16. The QSM optical fiber of claim 15 , wherein the cabled cutoff wavelength is less than about 2000 nm.

17. The QSM optical fiber of claim 15 , wherein the core has a peak refractive index n 0 on the centerline and a refractive index n 1 at the outer edge.

18. The QSM optical fiber of claim 17 , wherein the cladding has an inner annular moat region immediately adjacent the core.

19. The QSM optical fiber of claim 18 , wherein the core and the cladding have a bending loss BL<0.02 dB/turn at 1625 nm and for a bend diameter D B =60 mm.

20. The QSM optical fiber of claim 19 , wherein the cladding further comprises:

a high-index ring that begins at a radius of at least about 40 μm from the centerline of the core, wherein the high-index ring has a refractive index change in the range of at least about 0.0005 to less than about 0.0022.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2019
From: DOWNIE, JOHN DAVID; LI, MING-JUN; WOOD, WILLIAM ALLEN; ZAKHARIAN, ARAMAIS ROBERT
To: CORNING INCORPORATED
Reel/Frame 048254/0184 →
Continuity (2)
Provisional Application 62640262 · Mar 8, 2018
Related Publication 20190278019A1 · Sep 12, 2019
Cited By (1)
US 12,529,839