IP Library Granted Patent US 9,214,786
Granted Patent B2
US 9,214,786 · App. 14/249,276 · Granted Dec 15, 2015

Diode laser packages with flared laser oscillator waveguides

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Quick Facts
Patent No.
US 9,214,786
App. No.
14/249,276
Granted
Dec 15, 2015
Kind
B2
Abstract

A high brightness diode laser package includes a plurality of flared laser oscillator waveguides arranged on a stepped surface to emit respective laser beams in one or more emission directions, a plurality of optical components situated to receive the laser beams from the plurality of flared laser oscillator waveguides and to provide the beams in a closely packed relationship, and an optical fiber optically coupled to the closely packed beams for coupling the laser beams out of the diode laser package.

Claims (23)

1. A diode laser package, comprising:

a plurality of flared laser oscillator waveguides arranged on a stepped surface to emit respective laser beams in one or more emission directions;

a plurality of optical components situated to receive the laser beams from said plurality of flared laser oscillator waveguides and to provide the beams in a closely packed relationship; and

an optical fiber optically coupled to the closely packed beams for coupling the laser beams out of the diode laser package;

wherein said plurality of flared laser oscillator waveguides includes a first set of three or more of said flared laser oscillator waveguides arranged on a first stepped surface portion of said stepped surface at successive heights thereof such that a first set of beams is emitted parallel to each other and said first stepped surface portion in a first stepped configuration in a first emission direction;

wherein said plurality of optical components includes a first set of optical components associated with said first set of three or more flared laser oscillator waveguides, said first set of optical components including fast-axis collimation optics and slow-axis collimation optics for collimating the respective fast and slow axes of the first set of beams and beam-turning optics coupled to each first set beam so as to provide each first set beam in a first set turn direction such that the first stepped configuration of beams becomes a first stacked configuration of beams;

wherein said plurality of flared laser oscillator waveguides includes a second set of three or more of said flared laser oscillator waveguides arranged on a second stepped surface portion of said stepped surface at successive heights thereof such that a second set of beams is emitted parallel to each other and said second stepped surface portion in a second stepped configuration in a second emission direction opposite said first emission direction;

wherein said plurality of optical components includes a second set of optical components associated with said second set of three or more flared laser oscillator waveguides, said second set of optical components including fast-axis collimation optics and slow-axis collimation optics for collimating the respective fast and slow axes of the second set of beams and beam-turning optics coupled to each second set beam so as to provide each second set beam in a second set turn direction parallel to said first set turn direction such that the second stepped configuration of beams becomes a second stacked configuration of beams.

2. The package of claim 1 wherein said plurality of optical components includes an objective lens configured to optically couple the closely packed beams into said optical fiber.

3. The package of claim 1 wherein said plurality of optical components includes a cross-cylinder lens configured to independently control the respective fast and slow axes of the closely packed beams for optically coupling into said optical fiber.

4. The package of claim 1 wherein the closely packed beams are arranged in a rectangular or square configuration.

5. The package of claim 1 wherein said plurality of optical components includes a prism configured to geometrically multiplex said first and second stacked configurations of beams to become adjacent to each other.

6. The package of claim 1 wherein said plurality of optical components includes a polarization multiplexer configured to multiplex said first and second stacked configurations of beams to substantially overlap.

7. A diode laser package, comprising:

a plurality of flared laser oscillator waveguides arranged on a stepped surface to emit respective laser beams in one or more emission directions;

a plurality of optical components situated to receive the laser beams from said plurality of flared laser oscillator waveguides and to provide the beams in a closely packed relationship; and

an optical fiber optically coupled to the closely packed beams for coupling the laser beams out of the diode laser package;

wherein said plurality of flared laser oscillator waveguides includes two sets of twenty-four flared laser oscillator waveguides emitting corresponding sets of beams, wherein the two sets of beams are geometrically multiplexed to each other, and wherein each set of beams includes two subsets of twelve beams polarization multiplexed to each other.

8. The package of claim 1 wherein said plurality of optical components includes a volume Bragg grating optically coupled to one or more of the laser beams and configured to lock the wavelengths of the respective flared laser oscillator waveguides emitted the corresponding one or more laser beams.

9. The package of claim 7 , wherein said plurality of optical components includes an objective lens configured to optically couple the closely packed beams into said optical fiber.

10. The package of claim 7 , wherein said plurality of optical components includes a cross-cylinder lens configured to independently control the respective fast and slow axes of the closely packed beams for optically coupling into said optical fiber.

11. The package of claim 7 , wherein the closely packed beams are arranged in a rectangular or square configuration.

12. The package of claim 7 , wherein said plurality of optical components includes a volume Bragg grating optically coupled to one or more of the laser beams and configured to lock the wavelengths of the respective flared laser oscillator waveguides emitted the corresponding one or more laser beams.

Assignments (6)
SECURITY INTEREST Recorded Oct 23, 2018
From: NLIGHT, INC.
To: PACIFIC WESTERN BANK
Reel/Frame 047291/0833 →
CHANGE OF NAME Recorded Jul 12, 2018
From: NLIGHT PHOTONICS CORPORATION
To: NLIGHT, INC.
Reel/Frame 046531/0797 →
RELEASE OF SECURITY INTEREST Recorded Jan 29, 2018
From: MULTIPLIER GROWTH PARTNERS SPV I, LP
To: NLIGHT, INC.
Reel/Frame 045179/0374 →
SECURITY INTEREST Recorded Feb 2, 2017
From: NLIGHT, INC.
To: PACIFIC WESTERN BANK
Reel/Frame 041597/0679 →
SECURITY AGREEMENT Recorded Jul 23, 2015
From: NLIGHT PHOTONICS CORPORATION
To: MULTIPLIER GROWTH PARTNERS SPV I, LP
Reel/Frame 036175/0446 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2014
From: HEMENWAY, DAVID MARTIN; KANSKAR, MANOJ
To: NLIGHT PHOTONICS CORPORATION
Reel/Frame 032674/0149 →