IP Library Granted Patent US 11,626,708
Granted Patent B1
US 11,626,708 · App. 17/108,699 · Granted Apr 11, 2023

Laser diodes with an etched facet and surface treatment

Inventors: James W. Raring (Santa Barbara, CA); Mathew C. Schmidt (Goleta, CA); Bryan Ellis (Goleta, CA)
Assignee: KYOCERA SLD Laser, Inc.
H01S5/22H01S5/0203H01S5/1082H01S5/2201H01S5/32025H01S5/320275H01S5/32341H01S5/34333H01S5/0202H01S2301/02H01S2301/17
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Quick Facts
Patent No.
US 11,626,708
App. No.
17/108,699
Granted
Apr 11, 2023
Kind
B1
Abstract

A gallium- and nitrogen-containing laser device including an etched facet with surface treatment to improve an optical beam is disclosed.

Claims (33)

1. A laser diode device comprising:

a substantially planar surface region bounded by edge regions including a first edge region; and

a laser stripe overlying a portion of the substantially planar surface region, the laser stripe characterized by a length in a length direction and a width in a width direction, in the length direction the laser stripe includes a first end and a second end opposite the first end, the length direction being substantially orthogonal to the first edge region, and the width direction being substantially parallel to the first edge region, wherein the laser stripe is spaced on all sides from the edge regions by portions of the substantially planar surface region, the laser stripe comprising:

an n-type cladding region overlying the substantially planar surface region;

an active region overlying the n-type cladding region; and

a p-type cladding region overlying the active region;

wherein the first end of the laser stripe comprises a first facet, and the second end of the laser stripe comprises a second facet, the first facet having a primary emission surface, the first facet being substantially parallel to and recessed from the first edge region in the length direction, the first edge region comprising a surface treated region that includes a laser slag material;

wherein the laser stripe is operable to emit electromagnetic radiation in a wavelength range selected from a first range of about 400 nm to about 435 nm, a second range of about 435 nm to about 480 nm, a third range of about 480 nm to about 505 nm, and a fourth range of about 505 nm to about 550 nm.

2. The laser diode device of claim 1 , wherein the surface treated region is configured to interact with the electromagnetic radiation emitted by the laser stripe.

3. The laser diode device of claim 1 , wherein the first edge region comprises a surface-treated region that comprises one of a reflector, an absorber, or a scatterer.

4. The laser diode device of claim 1 , wherein the first facet of the laser stripe is recessed from the first edge region by a length ranging from about 0.5 μm to about 100 μm.

5. The laser diode device of claim 1 , wherein the edge regions comprise a second edge region opposite to the first edge region, and the second facet of the laser stripe is substantially parallel to and recessed from the second edge region in the length direction by a length ranging from about 0.5 μm to about 100 μm.

6. The laser diode device of claim 1 , wherein the n-type cladding region and the p-type cladding region are substantially free from aluminum species.

7. The laser diode device of claim 1 , wherein the surface region is characterized by a nonpolar m-plane orientation or an offcut of the non-polar m-plane orientation, wherein the offcut of the nonpolar m-plane orientation is between −5 degrees and +5 degrees toward a c-plane or between −10 degrees and +10 degrees toward an a-plane.

8. The laser diode device of claim 1 , wherein the surface region is characterized by a semipolar plane orientation selected from a (30-3-1) plane, a (30-31) plane, a (20-2-1) plane, a (20-21) plane, a (30-3-2) plane, and a (30-32) plane, or an offcut of the semipolar plane orientation, wherein the offcut of the semipolar plane orientation is between −5 degrees and +5 degrees toward a c-plane or between −10 degrees and +10 degrees toward an a-plane.

9. The laser diode device of claim 1 , wherein the surface region is characterized by a polar c-plane orientation or an offcut of the polar c-plane orientation.

10. The laser diode device of claim 1 , wherein the first facet is an etched facet.

11. The laser diode device of claim 1 , wherein the first edge region comprises a surface-treated region configured to interact with the electromagnetic radiation so as to minimize an intensity of the electromagnetic radiation emitted from the first edge region.

12. The laser diode device of claim 1 , wherein the first edge region comprises a surface-treated region that covers the entire first edge region.

13. A laser diode device comprising:

a substantially planar surface region bounded by edge regions including a first edge region; and

a laser stripe overlying a portion of the substantially planar surface region, the laser stripe characterized by a length in a length direction and a width in a width direction, in the length direction the laser stripe includes a first end and a second end opposite the first end, the length direction being substantially orthogonal to the first edge region, and the width direction being substantially parallel to the first edge region, wherein the laser stripe is spaced on all sides from the edge regions by portions of the substantially planar surface region, the laser stripe comprising:

an n-type cladding region overlying the substantially planar surface region;

an active region overlying the n-type cladding region; and

a p-type cladding region overlying the active region;

wherein the first end of the laser stripe comprises a first facet, and the second end of the laser stripe comprises a second facet, the first facet having a primary emission surface, the first facet being substantially parallel to and recessed from the first edge region in the length direction by a length ranging from about 0.5 μm to about 100 μm, the first edge region comprising a surface treated region that includes a laser slag material;

wherein the laser stripe is operable to emit electromagnetic radiation at a wavelength ranging from about 425 nm to about 485 nm or from about 500 nm to about 550 nm.

14. The laser diode device of claim 13 , wherein the n-type cladding region and the p-type cladding region are substantially free from aluminum species.

15. The laser diode device of claim 13 , wherein the edge regions comprise a second edge region opposite to the first edge region, and the second facet of the laser stripe is substantially parallel to and recessed from the second edge region in the length direction by a length ranging from about 0.5 μm to about 100 μm.

16. The laser diode device of claim 13 , wherein the surface region is characterized by one of a nonpolar m-plane, a semipolar plane selected from a (30-3-1) plane, a (30-31) plane, a (20-2-1) plane, a (20-21) plane, a (30-3-2) plane, and a (30-32) plane, an offcut of the semipolar plane, or an offcut of the nonpolar m-plane, wherein the offcut is between −5 degrees and +5 degrees toward a c-plane, or between −10 degrees and +10 degrees toward an a-plane.

17. The laser diode device of claim 13 , wherein the surface-treated region is configured to interact with the electromagnetic radiation emitted by the laser stripe, the surface-treated region comprising one of a reflector, an absorber, or a scatterer.

18. The laser diode device of claim 13 , wherein the first facet is an etched facet.

19. The laser diode device of claim 13 , wherein the first edge region comprises a surface-treated region that covers the entire first edge region.

Assignments (3)
CHANGE OF NAME Recorded Mar 10, 2021
From: SORAA LASER DIODE, INC.
To: KYOCERA SLD LASER, INC.
Reel/Frame 055550/0624 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2021
From: SORAA, INC.
To: SORAA LASER DIODE, INC.
Reel/Frame 055479/0285 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2021
From: RARING, JAMES W.; SCHMIDT, MATHEW; ELLIS, BRYAN
To: SORAA, INC.
Reel/Frame 055450/0551 →
Continuity (6)
Continuation 16715761 · Dec 16, 2019
Continuation 16154367 · Oct 8, 2018
Continuation 15453839 · Mar 8, 2017
Continuation 14878387 · Oct 8, 2015
Continuation 14010326 · Aug 26, 2013
Provisional Application 61695276 · Aug 30, 2012