IP Library Granted Patent US 7,366,384
Granted Patent B2
US 7,366,384 · App. 10/550,463 · Granted Apr 29, 2008

Microstructured optical fibre

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Quick Facts
Patent No.
US 7,366,384
App. No.
10/550,463
Granted
Apr 29, 2008
Kind
B2
Abstract

A microstructured optical fiber has a core region with a material having a refractive index n co and a microstructured region surrounding the core region with a background material having a refractive index n m which is lower than the refractive index n co . The microstructured region has a plurality of microstructures having a refractive index different from the refractive index n m , wherein the distance Δ φ between the centers of any couple of adjacent microstructures is at least equal to about λ p and not higher than about 1.5λ p , wherein λ p is the spatial variation length of the electric field intensity in the microstructured region.

Claims (22)

1. A microstructured optical fibre comprising a core region with a material having a refractive index n co and a microstructured region surrounding the core region with a background material having a refractive index n m which is lower than the refractive index n co , the microstructured region comprising a plurality of microstructures having a refractive index different from the refractive index n m , the distance Δ φ between the centers of any couple of adjacent microstructures being at least equal to about λ p and not higher than about 1.5λ p , wherein λ p is the spatial variation length of the electric field intensity in the microstructured region.

2. The microstructured optical fibre according to claim 1 , wherein the distance Δ φ is not higher than about 1.3λ p .

3. The microstructured optical fibre according to claim 1 , wherein a distance Δ p between the center of an innermost microstructure and the edge of the core region is at least of about 0.50λ p .

4. The microstructured optical fibre according to claim 1 , wherein a distance Δ p between the center of an innermost microstructure and the edge of the core region is not higher than about 0.75λ p .

5. The microstructured optical fibre according to claim 1 , wherein λ p is not higher than 7 μm.

6. The microstructured optical fibre according to claim 1 , wherein λ p is at least about 1 μm.

7. The microstructured optical fibre according to claim 1 , wherein the microstructures have a diameter of at least about 0.2 μm.

8. The microstructured optical fibre according to claim 1 , wherein the plurality of microstructures is arranged in at least one shell.

9. The microstructured optical fibre according to claim 1 , further comprising a cladding region surrounding the microstructured region.

10. The microstructured optical fibre according to claim 9 , wherein the cladding region comprises a material having a refractive index n c1 lower than the refractive index nm of the background material of the microstructured region.

11. The microstructured optical fibre according to claim 1 , wherein the microstructures have a refractive index lower than the refractive index n m of the background material of the microstructured region.

12. An optical communication line comprising a microstructured optical fibre according to claim 1 .

13. An optical communication system comprising a transmitting station for supplying an optical signal, a receiving station for receiving the optical signal and an optical communication line according to claim 12 .

14. A method for making a microstructured optical fibre starting from a target fibre, comprising the steps of making a microstructured preform and drawing the microstructured preform into the microstructured optical fibre, wherein the step of making the microstructured preform comprises the steps of:

a) providing a core region having a material with a refractive index n co ;

b) providing a microstructured region, surrounding the core region, having a background material with a refractive index n m which is lower than the refractive index n co ; and

c) providing the microstructured region with a plurality of microstructures having a refractive index different from the refractive index n m ; the step of making the preform further comprising the step of:

d) spacing the microstructures apart from each other so that in the drawn microstructured optical fibre the distance Δ φ between the centers of any couple of microstructures is at least equal to about λ p and not higher than about 1.5λ p , wherein λ p is the spatial variation length of the electric field intensity of the target fibre.

15. The method according to claim 14 , wherein the refractive index difference Δn co,m between the core region and the background material of the microstructured region is substantially the same as the refractive index difference between a core region and an outer core region of the target fibre.

16. The method according to claim 14 , wherein the step of making the preform also comprises the step of: e) providing a cladding region surrounding the microstructured region.

17. The method according to claim 16 , wherein the cladding region provided in step e) has a refractive index n c1 so that the refractive index difference Δn m,c1 between the background material of the microstructured region and the cladding region is substantially the same as the refractive index difference between an outer core region and a cladding region, surrounding the outer core region, of the target fibre.

18. A microstructured optical fibre preform comprising a core region with a material having a refractive index n co and a microstructured region, surrounding the core region, with a background material having a refractive index n m which is lower than the refractive index n co , the microstructured region comprising a plurality of microstructures having a refractive index different from the refractive index n m , the microstructures being spaced apart so that in a microstructured optical fibre drawn from the preform the distance Δ φ between the centers of any couple of microstructures is at least equal to about λ p and not higher than about 1.5λ p , wherein λ p is the spatial variation length of the electric field intensity in the microstructured region of the microstructured optical fibre drawn from the preform.

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 Jun 14, 2006
From: GAMBIRASIO, ALFREDO; TASSONE, FRANCESCO MARIA; TRAVAGNIN, MARTINO
To: PIRELLI & C. S.P.A.
Reel/Frame 017997/0092 →