IP Library Granted Patent US 9,748,730
Granted Patent B2
US 9,748,730 · App. 15/193,721 · Granted Aug 29, 2017

High-power, phased-locked, laser arrays

Inventor: Boris Leonidovich Volodin (Pennington, NJ)
Assignee: NECSEL INTELLECTUAL PROPERTY, INC.
H01S3/1305H01S5/065H01S5/141H01S5/148H01S5/4012H01S5/4062H01S5/4068H01S5/005H01S5/0654
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Quick Facts
Patent No.
US 9,748,730
App. No.
15/193,721
Granted
Aug 29, 2017
Kind
B2
Abstract

High-power, phased-locked, laser arrays as disclosed herein utilize a system of optical elements that may be external to the laser oscillator array. Such an external optical system may achieve mutually coherent operation of all the emitters in a laser array, and coherent combination of the output of all the lasers in the array into a single beam. Such an “external gain harness” system may include: an optical lens/mirror system that mixes the output of all the emitters in the array; a holographic optical element that combines the output of all the lasers in the array, and an output coupler that selects a single path for the combined output and also selects a common operating frequency for all the coupled gain regions.

Claims (36)

1. A system for producing mutually-coherent operation of a plurality of light emitters, each of the emitters outputting a respective power and brightness, the system comprising:

an optical system that mixes respective beams received from each of the plurality of emitters; and

a beam-combining element that forms at least one composite beam containing a respective contribution from each of the emitters, wherein a portion of the composite beam has a selected wavelength,

wherein the composite beam is fed back in such a way that mutually coherent operation of the plurality of emitters is achieved such that the emitters phase with a phase difference that results in a coherent output beam from the system, and wherein mutually coherent operation of the plurality of emitters is achieved such that each of the emitters lases at the selected wavelength.

2. The system of claim 1 , wherein a portion of the composite beam is fed back in such a way that each of the emitters receives narrowband light from every other emitter.

3. The system of claim 1 , wherein the coherent output beam has a brightness that is greater than the brightnesses of the individual emitters.

4. The system of claim 1 , further comprising a wavelength-selective output coupler that receives the composite beam from the beam-combining element.

5. The system of claim 4 , wherein the wavelength-selective output coupler feeds back a portion of the composite beam.

6. The system of claim 5 , wherein the wavelength-selective output coupler feeds back the portion of the composite beam in such a way that each of the emitters receives narrowband light from every other emitter.

7. The system of claim 6 , wherein the portion of the composite beam is fed back through the beam-combining element.

8. A method for producing mutually-coherent operation of a plurality of light emitters, each of the emitters outputting a respective power and brightness, the method comprising:

mixing respective beams received from each of the plurality of emitters;

forming a composite beam containing a respective contribution from each of the emitters, and

feeding back the composite beam in such a way that mutually coherent operation of the plurality of emitters is achieved such that the emitters lase with a phase difference that results in a coherent output beam from the system,

wherein a portion of the composite beam has a selected wavelength, and wherein mutually coherent operation of the plurality of emitters is achieved such that each of the emitters lases at the selected wavelength.

9. The method of claim 8 , wherein a portion of the composite beam is fed back in such a way that each of the emitters receives narrowband light from every other emitter.

10. The method of claim 8 , wherein the coherent output beam has a brightness that is greater than the brightnesses of the individual emitters.

11. The method of claim 8 , wherein a wavelength-selective output coupler that receives the composite beam from a beam-combining element.

12. The method of claim 11 , wherein the wavelength-selective output coupler feeds back a portion of the composite beam.

13. The method of claim 12 , wherein the wavelength-selective output coupler feeds back the portion of the composite beam in such a way that each of the emitters receives narrowband light from every other emitter.

14. The method of claim 13 , wherein the portion of the composite beam is fed back through the beam-combining element.

15. A system for producing mutually-coherent operation of a plurality of light emitters, each of the emitters outputting a respective power and brightness, the system comprising:

an optical system that mixes respective beams received from each of the plurality of emitters; and

a beam-combining element that forms at least one composite beam containing a respective contribution from each of the emitters, and

a wavelength-selective output coupler that receives the composite beam from the beam-combining element,

wherein the wavelength-selective output coupler feeds back a portion of the composite beam in such a way that each of the emitters receives narrowband light from every other emitter, and

wherein the composite beam is fed back in such a way that mutually coherent operation of the plurality of emitters is achieved such that the emitters lase with a phase difference that results in a coherent output beam from the system.

16. The system of claim 15 , wherein the coherent output beam has a brightness that is greater than the brightnesses of the individual emitters.

17. The system of claim 15 , wherein the portion of the composite beam is fed back through the beam-combining element.

18. A method for producing mutually-coherent operation of a plurality of light emitters, each of the emitters outputting a respective power and brightness, the method comprising:

mixing respective beams received from each of the plurality of emitters;

forming a composite beam containing a respective contribution from each of the emitters, and

feeding back the composite beam in such a way that mutually coherent operation of the plurality of emitters is achieved such that the emitters lase with a phase difference that results in a coherent output beam from the system,

wherein a wavelength-selective output coupler receives the composite beam from a beam-combining element, and the wavelength-selective output coupler feeds back a portion of the composite beam in such a way that each of the emitters receives narrowband light from every other emitter.

19. The method of claim 18 , wherein the coherent output beam has a brightness that is greater than the brightnesses of the individual emitters.

20. The method of claim 18 , wherein the portion of the composite beam is fed back through the beam-combining element.

Assignments (1)
MERGER AND CHANGE OF NAME Recorded Sep 8, 2016
From: PD-LD, INC.; NECSEL INTELLECTUAL PROPERTY, INC.
To: NECSEL INTELLECTUAL PROPERTY, INC.
Reel/Frame 039953/0595 →
Continuity (7)
Continuation 14809375 · Jul 27, 2015
Continuation 14278479 · May 15, 2014
Continuation 13682849 · Nov 21, 2012
Continuation 13113976 · May 23, 2011
Continuation 11346667 · Feb 3, 2006
Provisional Application 60649489 · Feb 3, 2005
Related Publication 20160308327A1 · Oct 20, 2016