Claims
- 1. A refractive index grating for dispersion compensation of a plurality of optical signals passing through an optical transmission line, said refractive index grating comprising:
a photosensitive optical fiber including a long length, chirped Bragg grating providing dispersion compensation over a wide bandwidth of said plurality of optical signals, said long length chirped Bragg grating having a reflection bandwidth and a weighted phase ripple amplitude wherein said reflection bandwidth has a full-width at half maximum that is greater than 25 nm, said weighted phase ripple amplitude being less than about 300 milliradians.
- 2. The refractive index grating of claim 1, wherein said weighted phase ripple amplitude is less than about 200 milliradians.
- 3. The refractive index grating of claim 2, wherein said weighted phase ripple amplitude is less than about 100 milliradians.
- 4. The refractive index grating of claim 1, wherein said long length, chirped Bragg grating has a dispersion, measured in reflection, that is greater than 100 ps/nm.
- 5. The refractive index grating of claim 4, wherein said long length, chirped Bragg grating has a dispersion, measured in reflection, that is greater than 400 ps/nm.
- 6. The refractive index grating of claim 4, wherein said long length, chirped Bragg grating is a matched Bragg grating that substantially compensates the dispersion characteristics of the optical fiber transmission line.
- 7. The refractive index grating of claim 6, wherein said matched Bragg grating has a parameter κ equal to the ratio of said dispersion and a dispersion slope characteristic of said matched Bragg grating over said wide bandwidth, said parameter κ substantially matching the optical fiber transmission line parameter κ.
- 8. The refractive index grating of claim 7, wherein said parameter κ differs less than ±10% from the transmission line parameter κ.
- 9. The refractive index grating of claim 7, wherein said parameter κ has a range from about 50 nm to about 300 nm.
- 10. The refractive index grating of claim 1, wherein said long length, chirped Bragg grating has a length exceeding about three meters.
- 11. A device for dispersion compensation of a plurality of optical signals passing through an optical transmission line, said device comprising:
a circulator; and a photosensitive optical fiber including a long length, chirped Bragg grating providing dispersion compensation over a wide bandwidth of said plurality of optical signals, said long length chirped Bragg grating having a reflection bandwidth greater than about 25 nm, said long length chirped Bragg grating further having a reduced distortion at a bit rate of about 10−9, said reduced distortion producing a power penalty less than 3 dB during less than 25 nm stepwise changes in wavelength of said plurality of optical signals across said wide bandwidth, said device providing a dispersion greater than about 100 ps/nm in the optical transmission line operating at 10 Gbit/s.
- 12. The device of claim 11, wherein said power penalty is less than 2 dB.
- 13. The device of claim 12, wherein said power penalty is less than 1 dB.
- 14. The device of claim 11, wherein said long length, chirped Bragg grating is a matched Bragg grating that substantially compensates the dispersion characteristics of the optical fiber transmission line.
- 15. The device of claim 14, wherein said matched Bragg grating has a parameter κ equal to the ratio of said dispersion and a dispersion slope characteristic of said matched Bragg grating over said wide bandwidth, said parameter κ substantially matching the optical fiber transmission line parameter κ.
- 16. The device of claim 15, wherein said parameter κ differs less than ±10% from the transmission line parameter κ.
- 17. The device of claim 15, wherein said parameter κ has a range from about 50 nm to about 300 nm.
- 18. A process for fabricating a refractive index grating for dispersion compensation of a plurality of optical signals passing through an optical transmission line, said process comprising the steps of:
providing a photosensitive optical fiber; mounting said photosensitive optical fiber in a helical groove that opens to a surface of a spool; attaching said spool to a flywheel; rotating said spool and said flywheel to provide a rotational inertia from about 200 g.cm2 to greater than 700 g.cm2; and exposing said photosensitive optical fiber to a pattern of ultraviolet radiation to provide said refractive index grating including a long length, chirped Bragg grating providing dispersion compensation over a wide bandwidth of said plurality of optical signals, said long length chirped Bragg grating having a reflection bandwidth and a weighted phase ripple amplitude wherein said reflection bandwidth has a full-width at half maximum that is greater than 25 nm, said weighted phase ripple amplitude being less than about 300 milliradians.
- 19. The process of claim 18, wherein said weighted phase ripple amplitude is less than about 100 milliradians.
- 20. The process of claim 18, wherein said long length, chirped Bragg grating has a length exceeding about three meters.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/809,393, filed on Mar. 15, 2001, now pending.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09809393 |
Mar 2001 |
US |
Child |
10393219 |
Mar 2003 |
US |