IP Library Granted Patent US 7,324,721
Granted Patent B2
US 7,324,721 · App. 10/565,590 · Granted Jan 29, 2008

Optical communication line with dispersion intrachannel nonlinearities management

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Quick Facts
Patent No.
US 7,324,721
App. No.
10/565,590
Granted
Jan 29, 2008
Kind
B2
Abstract

An optical communication line of a communication system has a first processing station and an amplifying station. The line has a first optical connection having at least partially compensated accumulated dispersion and is placed between the first processing station and the amplifying station. A second optical connection having at least partially compensated accumulated dispersion is connected to the output of the amplifying station. Portions of optical fiber leaving the processing station and the amplifying station are associated to respective first order chromatic dispersions which are of opposite signs and have absolute values lower than or equal to 13 ps 2 /Km.

Claims (45)

1. An optical communication line comprising:

a first optical connection with accumulated chromatic dispersion at least partially compensated and comprising:

a first optical waveguide portion directly connectable to an output of

a first processing station of electromagnetic radiation at a pre-established wavelength; and

a second optical waveguide portion coupled to the first portion;

an amplifying station provided with a first input directly connected to the second portion in order to receive the radiation and with a first output for amplified radiation;

a second optical connection with at least partially compensated accumulated dispersion and comprising:

a third optical waveguide portion directly connected to the first output;

a fourth optical waveguide portion coupled to said third portion and directly connectable to a second input of a second processing station, said first and third portions being associated to respective first order chromatic dispersions having opposite signs,

at least said first and third portions being associated to respective first order chromatic dispersions having, at the pre-established wavelength, a corresponding absolute value lower than or equal to 13 ps 2 /Km.

2. The communication line according to claim 1 , wherein at least said first and third portions are associated to respective first order chromatic dispersions having, at the pre-established wavelength, a corresponding absolute value lower than 10 ps 2 /Km.

3. The communication line according to claim 1 , wherein at least said first and third portions are associated to respective first order chromatic dispersions having, at the pre-established wavelength, an absolute value greater than 0.5 ps 2 /Km.

4. The communication line according to claim 3 , wherein at least one of said first and third portions is associated to respective first order chromatic dispersion having, at the pre-established wavelength, an absolute value greater than 1 ps 2 /Km.

5. The communication line according to claim 1 , wherein the first and the second optical connections are substantially formed by waveguide portions having, at the pre-established wavelength, first order chromatic dispersions in absolute value lower than 13 ps 2 /Km.

6. The communication line according to claim 1 , wherein said waveguide portions are substantially formed by optical fibers.

7. The communication line according to claim 1 , wherein said first station is such as to send on the first portion radiation having a first power value and said amplifying station is such as to send on the third portion amplified radiation having a second power value, the first and the third portions being such that the product of a non linearity coefficient associated to the first portion and said first power value is substantially equal to the product of a nonlinearity coefficient associated to the third portion and said second power value.

8. The communication line according to claim 1 , wherein the waveguides of said first portion and said third portion present effective areas of a value greater than or equal to 40 μm 2 .

9. The communication line according to claim 8 , wherein the waveguides of said first portion and said third portion present effective areas of a value greater than or equal to 50 μm 2 .

10. The communication line according to claim 1 , wherein said first and second optical connections present a substantially zero accumulated dispersion.

11. The communication line according to claim 1 , wherein each of said first and second optical connections is composed of two directly coupled portions of optical fiber having chromatic dispersions of opposite signs.

12. The communication line according to claim 1 , wherein said first and second optical connections include single mode optical fibers.

13. The communication line according to claim 1 , wherein said first processing station is an information signal transmission station including at least one source of radiation at a wavelength suitable for propagation in optical fiber.

14. The communication line according to claim 1 , wherein said second processing station is an information signal receiving station.

15. The communication line according to claim 13 , wherein said transmission station is such as to generate optical pulse signals.

16. The communication line according to claim 1 , wherein said first processing station is a radiation amplifying station and said second processing station is a further radiation amplifying station.

17. The communication line according to claim 1 , wherein at least said first and said second optical connections have a length greater than or equal to 40 km.

18. The communication line according to claim 17 , wherein said length is greater than or equal to 80 km.

19. The communication line according to claim 1 , wherein said first and second optical connections present substantially zero accumulated dispersion slope.

20. A method for manufacturing an optical line for a communication system, comprising the following steps:

providing a first processing station provided with an output for electromagnetic radiation having a pre-established wavelength;

connecting a first input of an amplifying station to the first station to receive radiation, the amplifying station being provided with a first output for amplified radiation;

placing a first optical connection including at least a first portion of optical waveguide directly connected to said output and a second portion of optical waveguide directly connected to the first input, said first connection having at least partially compensated accumulated chromatic dispersion;

placing a second optical connection having at least partially compensated accumulated chromatic dispersion and including a third portion of optical waveguide directly connected to the first output and a fourth portion of optical waveguide directly connectable to a second processing station; and

choosing said first and third portions in such a way that they are associated to respective first order chromatic dispersions of opposite signs and an absolute value, calculated at the pre-established wavelength, lower than or equal to 13 ps 2 /Km.

21. A method for limiting the non linear effects in an optical communication system, comprising the following steps:

supplying a first optical connection including at least a first portion of optical waveguide coupled to a second portion of optical waveguide, said first connection having at least partially compensated accumulated chromatic dispersion;

introducing electromagnetic radiation having a first wavelength in said first portion of optical waveguide;

amplifying the radiation leaving said second portion;

propagating said amplified radiation in a second optical connection having at least partially compensated accumulated chromatic dispersion and including a third portion of optical waveguide coupled to a fourth portion of optical waveguide, said first and third portions being associated to respective first order chromatic dispersions of opposite signs and a respective absolute value, calculated at the pre-established wavelength, lower than or equal to 13 ps 2 /Km.

22. A communication system comprising:

a first processing station provided with an output for electromagnetic radiation having a pre-established wavelength;

an amplifying station provided with a first input connected to the first station to receive the radiation and with a first output for amplified radiation;

a first optical connection having at least partially compensated accumulated chromatic dispersion and including at least a first portion of optical waveguide directly connected to said output and a second portion of optical waveguide directly connected to the first input;

a second optical connection having at least partially compensated accumulated chromatic dispersion and including at least a third portion of optical waveguide directly connected to the first output and a fourth portion of optical waveguide directly connectable to a second processing station, said first and third portions being associated to respective first order chromatic dispersions of opposite signs,

at least said first and third portions of fiber being associated to respective first order chromatic dispersions with an absolute value, at the pre-established wavelength, lower than or equal to 13 ps 2 /Km respectively.

Assignments (7)
CHANGE OF NAME Recorded Oct 5, 2017
From: GOOGLE INC.
To: GOOGLE LLC
Reel/Frame 044127/0735 →
RELEASE OF SECURITY INTEREST Recorded Feb 22, 2012
From: ROYAL BANK OF CANADA
To: MOSAID TECHNOLOGIES INCORPORATED; 658868 N.B. INC.; 658276 N.B. LTD.
Reel/Frame 027746/0210 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2012
From: MOSAID TECHNOLOGIES INC.
To: GOOGLE INC.
Reel/Frame 027636/0834 →
U.S. INTELLECTUAL PROPERTY SECURITY AGREEMENT (FOR NON-U.S. GRANTORS) - SHORT FORM Recorded Jan 10, 2012
From: 658276 N.B. LTD.; 658868 N.B. INC.; MOSAID TECHNOLOGIES INCORPORATED
To: ROYAL BANK OF CANADA
Reel/Frame 027512/0196 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2011
From: PGT PHOTONICS S.P.A.
To: MOSAID TECHNOLOGIES INCORPORATED
Reel/Frame 027373/0846 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2011
From: PIRELLI & C. S.P.A.
To: PGT PHOTONICS S.P.A.
Reel/Frame 027371/0187 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2006
From: MINZIONI, PAOLO; SCHIFFINI, ALESSANDRO; PAOLETTI, ARIANNA
To: PIRELLI & C. S.P.A.
Reel/Frame 018287/0514 →