IP Library Granted Patent US 7,151,880
Granted Patent B2
US 7,151,880 · App. 10/451,705 · Granted Dec 19, 2006

Dispersion-managed optical soliton transmission system

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Quick Facts
Patent No.
US 7,151,880
App. No.
10/451,705
Granted
Dec 19, 2006
Kind
B2
Abstract

A dispersion-managed optical soliton transmission system uses alternating spans of positive-dispersion optical fiber having a negative slope and negative-dispersion optical fiber having a positive slope. For wavelength division multiplexing, the system has a map strength preferably between 4 and 8. An absolute value of average group velocity dispersion between 0.5 and 0.0 ps 2 /km, and soliton power may vary between channels within 1 dB. Map periods, amplifier spacings, and dispersion values across a wavelength range of 1530–1600 nm are disclosed for bit rates of 10 and 40 Gbits/sec to maintain the ranges of average group velocity dispersion and soliton power.

Claims (31)

1. A dispersion managed optical soliton transmission system for transmitting wavelength-division-multiplexed optical solitons within a wavelength range, comprising:

at least one transmitter for supplying RZ optical channels, the RZ optical channels having an equalized power-per-channel;

at least a first span comprising a first dispersive element having positive dispersion with a negative dispersion slope across the wavelength range;

at least a second span, positioned in series with the first span in a transmission line, comprising a second dispersive element having negative dispersion with a positive dispersion slope across the wavelength range; and

a plurality of wavelength-division-multiplexed optical solitons located in at least one of the first span and the second span, the solitons having a substantially constant power variation over the wavelength range in the RZ optical channels.

2. The dispersion managed optical soliton transmission system as in claim 1 , wherein said first and second dispersive elements are optical fibers.

3. The dispersion managed optical soliton transmission system as in claim 2 , wherein the length of said first span is substantially equal to the length of said second span.

4. The dispersion managed optical soliton transmission system as in claim 2 , wherein the length of said first span is different from the length of said second span.

5. The dispersion managed optical soliton transmission system as in claim 2 , wherein the absolute value of the dispersion slope of said optical fibers is higher than about 0.0005 ps/nm 2 /km.

6. The dispersion managed optical soliton transmission system as in claim 2 , wherein the absolute value of the dispersion slope of at least one of said optical fibers is lower than about 0.25 ps/nm 2 /km.

7. The dispersion managed optical soliton transmission system as in claim 2 , wherein the absolute value of the dispersion of said optical fibers is higher than about 1.5 ps/nm/km.

8. The dispersion managed optical soliton transmission system as in claim 1 , wherein one of said dispersive elements is an optical fiber and the other of said dispersive elements is an optical grating.

9. The dispersion managed optical soliton transmission system as in claim 8 , wherein the absolute value of the sole of said optical fiber is higher than about 0.0005 ps/nm 2 /km.

10. The dispersion managed optical soliton transmission system as in claim 8 , wherein the absolute value of the slope of said optical fiber is lower than about 0.25 ps/nm 2 /km.

11. The dispersion managed optical soliton transmission system as in claim 8 , wherein the absolute value of the dispersion of said optical fiber is higher than about 1.5 ps/mn/km.

12. The dispersion managed optical soliton transmission system as in claim 1 , wherein a minimum in map strength of the system across the wavelength range is 4.

13. The dispersion managed optical soliton transmission system as in claim 1 , wherein a maximum in map strength of the system across the wavelength range is 12.

14. The dispersion managed optical soliton transmission system as in claim 13 , wherein a maximum in map strength of the system across the wavelength range is 8.

15. The dispersion managed optical soliton transmission system as in claim 1 , wherein said wavelength range is between about 1530 and 1600 nm.

16. The dispersion managed optical soliton transmission system as in claim 1 , further comprising a plurality of optical amplifiers interspersed along said system.

17. The dispersion managed optical soliton transmission system as in claim 1 , wherein an average GVD of the dispersion managed system is between −0.5 and 0.0 ps 2 /km.

18. The dispersion managed optical soliton transmission system as in claim 17 , wherein the average GVD of the dispersion managed system is between −0.05 and 0.0 ps 2 /km.

19. A method of transmitting wavelength division multiplexed solitons across a transmission line within a wavelength range, the method comprising the steps of:

a) generating at least two soliton channels;

b) transmitting said soliton channels across a first span comprising a first dispersive element having positive dispersion with a negative dispersion slope across the wavelength range;

c) transmitting said soliton channels across a second span comprising a second dispersive element having negative dispersion with a positive dispersion slope across the wavelength range; and

(d) equalizing a power-per-channel in the two soliton channels, wherein a soliton power variation is kept substantially constant over the wavelength range in the two soliton channels.

20. A WDM dispersion managed soliton transmission system for transmitting solitons of wavelengths in a predetermined wavelength range, comprising:

at least one transmitter for supplying RZ optical channels, the RZ optical channels having an equalized power-per-channel;

at least a first span comprising a first dispersive element; at least a second span comprising a second dispersive element being positioned in series with the first span, said first and second dispersive elements having dispersion characteristics such that a map strength of the dispersion managed system decreases with increasing wavelength across the wavelength range and an average GVD of the dispersion managed system is between −0.5 and 0.0 ps 2 /km; and

a plurality of wavelength-division-multiplexed optical solitons located in at least one of the first span and the second span, the solitons having a substantially constant power variation over the wavelength range in the RZ optical channels.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2006
From: PRYSMIAN (LUX) II S.A.R.L.
To: PRYSMIAN CAVI E SISTEMI ENERGIA S.R.L.
Reel/Frame 018171/0452 →
CHANGE OF NAME Recorded Aug 24, 2006
From: GSCP ATHENA (LUX) II S.A.R.L.
To: PRYSMIAN (LUX) II S.A.R.L.
Reel/Frame 018160/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2006
From: PIRELLI & C. S.P.A.
To: GSCP ATHENA (LUX) II S.A.R.L.
Reel/Frame 018148/0523 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2003
From: SARTORI, FRANCESCO
To: PIRELLI S.P.A.
Reel/Frame 014694/0488 →