IP Library Granted Patent US 7,177,511
Granted Patent B2
US 7,177,511 · App. 10/415,474 · Granted Feb 13, 2007

Optical fiber, optical fiber filter, and optical amplifier

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Quick Facts
Patent No.
US 7,177,511
App. No.
10/415,474
Granted
Feb 13, 2007
Kind
B2
Abstract

An optical fiber filter includes an optical fiber, a pair of first coupling regions, and a phase-shift region. The optical fiber includes a core and a cladding. An optical signal can pass through the optical fiber. The first coupling regions are formed in the optical fiber, at a predefined mutual distance, for producing power transfer between first and second propagation modes of the optical signal. The phase-shift region is defined by a section of the optical fiber, disposed between the first coupling regions, for producing a phase shift between the first and second propagation modes of the optical signal. In the first coupling regions, the optical fiber includes, in cross-section, an asymmetrical refractive index profile. A related optical fiber filtering device, optical fiber, process for producing an optical filter, optical amplifier, optical telecommunications system, optical fiber modal coupler, and method for filtering an optical signal are also disclosed.

Claims (95)

1. An optical fiber filter, comprising:

an optical fiber;

a pair of first coupling regions; and

a phase-shift region;

wherein the optical fiber comprises:

a core; and

a cladding;

wherein an optical signal can pass through the optical fiber,

wherein the first coupling regions are formed in the optical fiber, at a predefined mutual distance, for producing power transfer between a first propagation mode of the optical signal and a second propagation mode of the optical signal,

wherein the phase-shift region is defined by a section of the optical fiber, disposed between the first coupling regions, for producing a phase shift between the first and second propagation modes, and

wherein refractive index profiles of the optical fiber in each of the first coupling regions are asymmetrical due to the presence of a cladding zone with a refractive index higher than a refractive index of the remainder of the cladding.

2. The filter of claim 1 , wherein, in each of the first coupling regions, the cladding comprises, in cross-section, an annular sector, and

wherein, in each annular sector, a refractive index of the annular sector is greater than a refractive index of a remainder of the cladding.

3. The filter of claim 2 , wherein the cladding comprises, in cross-section:

an inner annular region; and

an outer annular region;

wherein the inner annular region is adjacent to the core, and

wherein the inner annular region comprises the annular sectors.

4. The filter of claim 2 , wherein the annular sectors are disposed in a substantially-similar angular position.

5. The filter of claim 2 , further comprising:

a pair of second coupling regions formed in the optical fiber;

wherein the annular sectors are disposed in a first substantially-similar angular position,

wherein each of the second coupling regions comprises, in cross-section, a further annular sector comprising a refractive index greater than the refractive index of the remainder of the cladding,

wherein the further annular sectors are disposed in a second substantially-similar angular position, and

wherein the first substantially-similar angular position is different from the second substantially-similar angular position.

6. The filter of claim 5 , wherein each of the second coupling regions is formed in a vicinity of a respective first coupling region.

7. The filter of claim 2 , wherein a difference between the refractive index of each of the annular sectors and the refractive index of the remainder of the cladding is greater than or equal to 5×10 −4 .

8. The filter of claim 1 , wherein the cladding comprises, in cross-section:

an inner annular region; and

an outer annular region;

wherein the inner annular region is adjacent to the core.

9. The filter of claim 1 , wherein, outside of the first coupling regions, the optical fiber comprises, in cross-section, a refractive index profile of a step-index type.

10. The filter of claim 1 , wherein the optical signal comprises a wavelength comprised in a predefined transmission wavelength band, and

wherein the optical fiber is dual-mode in the predefined transmission wavelength band.

11. The filter of claim 8 or 3 , wherein the inner annular region comprises silica, and

wherein the inner annular region comprises oxides of at least one of germanium, phosphorus, and fluorine.

12. An optical fiber filtering device, comprising:

a plurality of optical fiber filters;

wherein the optical fiber filters are connected In series,

wherein each optical fiber filter comprises:

an optical fiber;

a pair of coupling regions; and

a phase-shift region;

wherein the optical fiber comprises:

a core; and

a cladding;

wherein an optical signal can pass through the optical fiber,

wherein the coupling regions are formed in the optical fiber, at a predefined mutual distance, for producing power transfer between a first propagation mode of the optical signal and a second propagation mode of the optical signal,

wherein the phase-shift region is defined by a section of the optical fiber, disposed between the coupling regions, for producing a phase shift between the first and second propagation modes, and

wherein refractive index profiles of the optical fiber in each of the coupling regions are asymmetrical due to the presence of a cladding zone with a refractive index higher than a refractive index of the remainder of the cladding.

13. An optical amplifier, comprising:

an optical fiber filter; and

at least one optical amplification stage;

wherein the optical fiber filter is disposed in series with the at least one optical amplification stage,

wherein the optical fiber filter comprises:

an optical fiber;

a pair of coupling regions; and

a phase-shift region;

wherein the optical fiber comprises:

a core; and

a cladding;

wherein an optical signal can pass through the optical fiber,

wherein the coupling regions are formed in the optical fiber, at a predefined mutual distance, for producing power transfer between a first propagation mode of the optical signal and a second propagation mode of the optical signal,

wherein the phase-shift region is defined by a section of the optical fiber, disposed between the coupling regions, for producing a phase shift between the first and second propagation modes, and

wherein refractive index profiles of the optical fiber in each of the coupling regions are asymmetrical due to the presence of a cladding zone with a refractive index higher than a refractive index of the remainder of the cladding.

14. An optical telecommunications system, comprising:

at least one optical transmitter;

at least one optical receiver;

an optical transmission line connecting the at least one optical transmitter to the at least one optical receiver; and

at least one optical amplifier:

wherein the at least one optical amplifier is disposed along the optical transmission line,

wherein the at least one optical amplifier comprises:

an optical fiber filter; and

at least one optical amplification stage;

wherein the optical fiber filter is disposed in series with the at least one optical amplification stage,

wherein the optical fiber filter comprises:

an optical fiber;

a pair of coupling regions; and

a phase-shift region;

wherein the optical fiber comprises:

a core; and

a cladding;

wherein an optical signal can pass through the optical fiber,

wherein the coupling regions are formed in the optical fiber, at a predefined mutual distance, for producing power transfer between a first propagation mode of the optical signal and a second propagation mode of the optical signal,

wherein the phase-shift region is defined by a section of the optical fiber, disposed between the coupling regions, for producing a phase shift between the first and second propagation modes, and

wherein refractive index profiles of the optical fiber in each of the coupling regions are asymmetrical due to the presence of a cladding zone with a refractive index higher than a refractive index of the remainder of the cladding.

15. An optical fiber modal coupler, comprising:

an optical fiber; and

a coupling region;

wherein the optical fiber comprises:

a core; and

a cladding;

wherein an optical signal can pass through the optical fiber,

wherein the coupling region is formed in the optical fiber to produce power transfer between a first propagation mode of the optical signal and a second propagation mode of the optical signal, and

wherein a refractive index profile of the optical fiber in the coupling region is asymmetrical due to the presence of a claddin zone with a refractive index higher than a refractive index of the remainder of the cladding.

Assignments (8)
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 →
MERGER Recorded Dec 9, 2011
From: PIRELLI S.P.A.
To: PIRELLI & C. S.P.A.
Reel/Frame 027355/0520 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2003
From: VAVASSORI, PAOLO; IOMMI, ALESSANDRO
To: PIRELLI S.P.A.
Reel/Frame 014544/0552 →