IP Library Granted Patent US 8,488,234
Granted Patent B2
US 8,488,234 · App. 12/583,719 · Granted Jul 16, 2013

Adiabatic bend transitions for multimode fibers

Inventors: Stefan Franz Grünsteidl (Munich, DE); João M. Sousa (Sobrado, PT); Martin O. Berendt (Arvore, PT); Rosa M. Muñiz (Porto, PT); Paulo T. Guerreiro (Senhora da Hora, PT)
Assignee: Kongsberg Seatex AS
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,488,234
App. No.
12/583,719
Granted
Jul 16, 2013
Kind
B2
Abstract

Guided adiabatic bend transitions for multimode fibers are presented to preserve the power of guided light in the fundamental mode while guiding from one level of curvature to another for improved operation of mode filters and fiber amplifiers. A method is provided to find the guidance path. Implementations of these transducers include modal power back converters, and guidance paths into and out of higher order mode filtering devices which work on bending. A spiral structure is shown to incorporate adiabatic bends for a forward-pumped fiber amplifier.

Claims (25)

1. A multi-mode optical fiber comprising:

an adiabatic bend section, said bend section comprising a length of multi-mode fiber being bent according to a bend radius that varies according to a nonlinear transition function over said length, wherein the nonlinear transition function is a quadratic function or a trigonometric function, wherein the nonlinear transition function is based on a gain of an amplifier, wherein the gain is non-uniformly distributed; and

an output section adjoining said bend section, said output section having no observable transverse modes above a fundamental mode when light propagates through said adiabatic bend section.

2. The multi-mode optical fiber of claim 1 , wherein the quadratic function is a second order polynomial function and the trigonometric function comprises a sine function or cosine function.

3. The multi-mode optical fiber of claim 1 , further comprises a twisted section inside or adjoining said adiabatic bend section.

4. The multi-mode optical fiber of claim 1 , said adiabatic bend section being bent in at least two geometrical planes.

5. The multi-mode optical fiber of claim 4 , said adiabatic bend section having a shape resembling a spiral.

6. The multi-mode optical fiber of claim 1 , said length of multi-mode fiber is doped with rare-earth ions.

7. The multi-mode optical fiber of claim 1 , said length of multi-mode fiber comprises a double-cladding structure.

8. The multi-mode optical fiber of claim 1 , said length of multi-mode fiber having a V-number greater than 2.4.

9. The multi-mode optical fiber of claim 1 , further comprising one or more additional adiabatic bend sections.

10. An optical system comprising:

a light source, and

a multi-mode optical fiber, said multi-mode optical fiber comprises:

an adiabatic bend section, said bend section comprising a length of multi-mode fiber being bent according to a bend radius that varies according to a nonlinear transition function over said length, wherein the nonlinear transition function is a quadratic function or a trigonometric function; and

an output section adjoining said bend section, said output section having no observable transverse modes above a fundamental mode when light propagates through said adiabatic bend section.

11. The optical system of claim 10 , said light source comprises a pulsed light source.

12. The optical system of claim 10 , said light source comprises a continuous wave light source.

13. The optical system of claim 10 , further comprising a laser pump.

14. The optical system of claim 10 , further comprising a groove for inserting said adiabatic bend section within.

15. An optical fiber comprising:

a bend section, and

an adiabatic transducer applied to the entrance and/or exit of said bend section, said adiabatic transducer minimizing modal coupling out of a fundamental mode by having a bend radius that varies according to a nonlinear transition function that is a quadratic function or a trigonometric function.

16. The optical fiber of claim 15 , said bend section comprising a coil.

17. The optical fiber of claim 16 , said coil is a helical coil.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2023
From: KONGSBERG MARITIME AS
To: KONGSBERG DISCOVERY AS
Reel/Frame 065205/0859 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2022
From: KONGSBERG SEATEX AS
To: KONGSBERG MARITIME AS
Reel/Frame 061825/0688 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2012
From: MULTIWAVE PHOTONICS SA
To: KONGSBERG SEATEX AS
Reel/Frame 028369/0312 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2011
From: GRUNSTEIDL, STEFAN F.; SOUSA, JOAO M.; BERENDT, MARTIN O.; MUNIZ, ROSA R.; GUERREIRO, PUALO T.
To: MULTIWAVE PHOTONICS SA
Reel/Frame 027020/0682 →
Continuity (1)
Related Publication 20110043898A1 · Feb 24, 2011