IP Library Granted Patent US 8,718,104
Granted Patent B2
US 8,718,104 · App. 13/792,179 · Granted May 6, 2014

Supercontinuum pulse source

Inventors: John Redvers Clowes (Sway Lymington, GB); Anatoly Borisovich Grudinin (Southampton, GB); Ian Michael Godfrey (Southampton, GB)
Assignee: Fianium Ltd.
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Quick Facts
Patent No.
US 8,718,104
App. No.
13/792,179
Granted
May 6, 2014
Kind
B2
Abstract

An optical pulse source for generating optical supercontinuum pulses comprises an optical pump laser operable to generate optical pump pulses at a pump pulse repetition rate Rf; a nonlinear optical element comprising an optical fiber for generating optical supercontinuum pulses; an optical modulator operable to selectively control the launch of pump pulses into the optical fiber at a reduced, lower repetition rate Rr=Rf/N in order to generate optical supercontinuum pulses at a selectable and lower repetition rate; an optical fiber amplifier located between the optical modulator and the optical pump laser; wherein the optical supercontinuum pulses generated by the optical fiber have a supercontinuum spanning from below 450 nm to greater than 2000 nm; wherein the optical pulse source is provided with a microprocessor configured to determine when supercontinuum pulses are delivered; and wherein the optical pulse source is configured to provide an output trigger signal.

Claims (29)

1. Optical pulse source for generating optical supercontinuum pulses, comprising:

an optical pump laser operable to generate optical pump pulses at a pump pulse repetition rate Rf;

a nonlinear optical element comprising an optical fiber arranged to receive the optical pump pulses and configured to generate therefrom optical supercontinuum pulses;

an optical modulator provided between the pump laser and the optical fiber and operable to selectively control the launch of pump pulses into the optical fiber at a reduced, lower repetition rate Rr=Rf/N, wherein N is a positive integer, in order to generate optical supercontinuum pulses at a selectable repetition rate lower than the pump pulse repetition rate;

an optical fiber amplifier located between the optical modulator and the optical pump laser;

wherein the optical pulse source is configured such that the optical supercontinuum pulses generated by the optical fiber have a supercontinuum spanning from below 450 nm to greater than 2000 nm;

wherein the optical pulse source is provided with a microprocessor configured to determine when supercontinuum pulses are delivered; and

wherein the optical pulse source is configured to provide an output trigger signal.

2. The optical pulse source of claim 1 wherein the optical pulse source further comprises a wavelength tunable optical bandpass filter configured to receive an optical supercontinuum pulse and to wavelength filter the pulse at a predetermined wavelength.

3. The optical pulse source of claim 1 wherein the optical pulse source comprises an all-fiber source wherein said optical pump laser comprises a fiber oscillator, said optical modulator comprises a fiber coupled optical modulator, and wherein the optical pulse source is configured such that pump pulses are launched into said fiber without free space optics.

4. The optical pulse source according to claim 2 wherein the wavelength tunable optical bandpass filter comprises an acousto-optic tunable filter.

5. The optical pulse source according to claim 1 wherein said optical modulator comprises an acousto-optic modulator.

6. The optical pulse source of claim 1 configured to generate optical supercontinuum pulses at pulse repetition rates variable between 40 MHz and less than 100 kHz.

7. The optical pulse source according to claim 1 , wherein the optical pulse source further comprises a gating device provided after the nonlinear optical element and configured to receive and pulse-pick optical supercontinuum pulses.

8. The optical pulse source according to claim 6 wherein pump pulses are launched into said optical fiber without the use of free space optics.

9. The optical pulse source according to claim 1 comprising a second optical fiber amplifier located between said optical modulator and said nonlinear optical element.

10. The optical pulse source according to claim 9 wherein pump pulses are launched into said optical fiber without the use of free space optics.

11. The optical pulse source according to claim 1 wherein pump pulses are launched into said optical fiber without the use of free space optics.

12. Optical pulse source for generating optical supercontinuum pulses, comprising:

an optical pump laser operable to generate optical pump pulses at a pump pulse repetition rate Rf;

a nonlinear optical element comprising an optical fiber arranged to receive the optical pump pulses and configured to generate therefrom optical supercontinuum pulses;

an optical modulator provided between the pump laser and the optical fiber and operable to selectively control the launch of pump pulses into the optical fiber at a reduced, lower repetition rate Rr=Rf/N, wherein N is a positive integer, in order to generate optical supercontinuum pulses at a selectable repetition rate lower than the pump pulse repetition rate;

wherein the optical pulse source is configured such that the optical supercontinuum pulses generated by the optical fiber have a supercontinuum spanning from below 450 nm to greater than 2000 nm;

wherein the optical pulse source is provided with a microprocessor configured to determine when supercontinuum pulses are delivered by the optical pulse source; and

wherein the optical pulse source is configured to provide an output trigger signal.

13. The optical pulse source according to claim 12 wherein pump pulses are launched into said optical fiber without the use of free space optics.

14. The optical pulse source of claim 13 wherein the optical pulse source further comprises a wavelength tunable optical bandpass filter configured to receive an optical supercontinuum pulse and to wavelength filter the pulse at a predetermined wavelength.

15. The optical pulse source of claim 12 wherein the optical pulse source further comprises a wavelength tunable optical bandpass filter configured to receive an optical supercontinuum pulse and to wavelength filter the pulse at a predetermined wavelength.

16. The optical pulse source according to claim 12 comprising an optical fiber amplifier located between said optical modulator and said nonlinear optical element.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2017
From: FIANIUM LTD
To: NKT PHOTONICS A/S
Reel/Frame 042174/0541 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2014
From: CLOWES, JOHN R., MR.; GRUDININ, ANATOLY B., MR.; GODFREY, IAN M., MR.
To: FIANIUM LTD.
Reel/Frame 032436/0153 →
Priority Claims (1)
GB 0800936.7 · Jan 19, 2008 · national
Continuity (2)
Continuation 12316006 · Dec 9, 2008
Related Publication 20130208739A1 · Aug 15, 2013