IP Library Granted Patent US 9,557,625
Granted Patent B2
US 9,557,625 · App. 14/710,660 · Granted Jan 31, 2017

Fiber frequency comb article

Inventors: Ian Coddington (Boulder, CO); Laura Sinclair (Boulder, CO); Nathan R. Newbury (Boulder, CO); Lindsay Sonderhouse (Boulder, CO); William C Swann (Boulder, CO)
Assignees: THE UNITED STATES OF AMERICA, AS REPRESENTED BY THE SECRETARY OF COMMERCE; THE REGENTS OF THE UNIVERISTY OF COLORADO
G02F1/3532H01S3/0057H01S3/0092H01S3/06712H01S3/06754G02F1/365G02F1/3775G02F2001/3528G02F2203/56H01S3/1118
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Quick Facts
Patent No.
US 9,557,625
App. No.
14/710,660
Granted
Jan 31, 2017
Kind
B2
Abstract

The present invention relates to a frequency comb article includes an oscillator; a fiber amplifier; a frequency doubler; a nonlinear fiber; and an interferometer, wherein the fiber amplifier and the nonlinear fiber include a polarization maintaining fiber, and the oscillator, frequency doubler, and interferometer are entirely polarization maintaining.

Claims (40)

1. A frequency comb article comprising:

an oscillator to produce an oscillator frequency comb comprising:

a first power; and

a first optical bandwidth;

a fiber amplifier to receive the oscillator frequency comb from the oscillator and to produce an amplifier frequency comb based on the oscillator frequency comb, the amplifier frequency comb comprising:

a second power that is greater than the first power; and

a second optical bandwidth that is greater than the first optical bandwidth;

an isolator interposed between the oscillator and the fiber amplifier to communicate the oscillator frequency comb to the fiber amplifier;

a nonlinear fiber to receive the amplifier frequency comb from the fiber amplifier and to produce a spectrally broadened frequency comb based on the amplifier frequency comb, the spectrally broadened frequency comb comprising a third optical bandwidth that is greater than the second optical bandwidth;

a frequency doubler to receive the spectrally broadened frequency comb from the nonlinear fiber and to provide a doubled frequency comb comprising:

a plurality of fundamental frequencies from the spectrally broadened frequency comb; and

a plurality of doubled frequencies, based on the plurality of fundamental frequencies

the frequency doubler being interposed between a pair of wavelength division multiplexers;

an interferometer in optical communication with the frequency doubler to receive the doubled frequency comb,

wherein the fiber amplifier and the nonlinear fiber comprise a polarization maintaining fiber, and

the oscillator and the frequency doubler are entirely polarization maintaining.

2. The frequency comb article of claim 1 , wherein the oscillator comprises a fiber.

3. The frequency comb article of claim 2 , wherein the fiber comprises an erbium-doped fiber.

4. The frequency comb article of claim 3 , wherein a dispersion of the erbium-doped fiber is anomalous dispersion.

5. The frequency comb article of claim 4 , wherein the oscillator further comprises a mirror that comprises a semiconductor saturable absorber.

6. The frequency comb article of claim 5 , wherein the oscillator is configured to be self-mode locked.

7. The frequency comb article of claim 6 , wherein the frequency comb article is configured such that, when operated, the oscillator frequency comb is stabilized to the amplifier frequency comb.

8. The frequency comb article of claim 7 , wherein the oscillator further comprises a piezo-electric transducer disposed on the fiber.

9. The frequency comb article of claim 7 , wherein the oscillator is referenced to the signal frequency comb from the interferometer.

10. The frequency comb article of claim 1 , wherein the fiber amplifier comprises a normal dispersion fiber.

11. The frequency comb article of claim 10 , wherein the normal dispersion fiber comprises an erbium-doped fiber.

12. The frequency comb article of claim 1 , wherein the frequency doubler comprises a waveguide, and the waveguide comprises a periodically poled lithium niobate crystal.

13. The frequency comb article of claim 1 , wherein the interferometer receives the doubled frequency comb from frequency doubler and provides a signal frequency comb based on the doubled frequency comb, the signal frequency comb comprising the plurality of doubled frequencies that is temporally overlapped and spatially overlapped with the plurality of fundamental frequencies,

wherein the interferometer is entirely polarization maintaining.

14. The frequency comb article of claim 1 , further comprising a housing in which the oscillator, the fiber amplifier, the nonlinear fiber, and the frequency doubler are disposed.

15. The frequency comb article of claim 1 , wherein a dispersion of the oscillator is less than or equal to -0.04 ps 2 , based on a round-trip propagation of light in the oscillator.

16. The frequency comb article of claim 1 , wherein the spectrally broadened frequency comb comprises an optical coherence that is less than 2 radians for an entire bandwidth of the spectrally broadened frequency comb.

17. The frequency comb article of claim 1 , wherein the frequency comb article is configured to produce the spectrally broadened frequency comb that is coherent for greater than 90 hours.

18. The frequency comb article of claim 1 , wherein the oscillator, the fiber amplifier, the nonlinear fiber, and the frequency doubler comprise a plurality of polarization maintaining fibers in an absence of free-space propagation of radiation in the frequency comb article.

19. The frequency comb article of claim 1 , wherein the spectrally broadened frequency comb comprises:

an octave-spanning spectrum from 1 μm to greater than 2.5 μm; and

a pulse-to-pulse timing jitter that is less than or equal to 3 fs.

20. The frequency comb article of claim 1 , wherein the frequency comb article is configured to maintain:

an optical coherence of the spectrally broadened frequency comb when subjected to an acceleration greater than or equal to 0.5 g (4.9 m/s 2 ), and

a pulse-to-pulse timing jitter of the spectrally broadened frequency comb when subjected to an acceleration greater than or equal to 0.5 g (4.9 m/s 2 ).

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2015
From: SONDERHOUSE, LINDSAY; SWANN, WILLIAM C.
To: GOVERNMENT OF THE UNITED STATES OF AMERICA, AS REPRESENTED BY THE SECRETARY OF COMMERCE, THE NATIONAL INSTITUTE OF STANDARDS AND TECHNOLOGY
Reel/Frame 037222/0475 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2015
From: SINCLAIR, LAURA
To: THE REGENTS OF THE UNIVERSITY OF COLORADO
Reel/Frame 037222/0561 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2015
From: CODDINGTON, IAN; NEWBURY, NATHAN R.
To: GOVERNMENT OF THE UNITED STATES OF AMERICA, AS REPRESENTED BY THE SECRETARY OF COMMERCE, THE NATIONAL INSTITUTE OF STANDARDS AND TECHNOLOGY
Reel/Frame 037177/0434 →
Continuity (2)
Provisional Application 62000640 · May 20, 2014
Related Publication 20150253645A1 · Sep 10, 2015