IP Library › Granted Patent US 10,505,346
Granted Patent B2
US 10,505,346 · App. 16/027,938 · Granted Dec 10, 2019

Semiconductor laser device, chip on submount, and semiconductor laser module

Inventors: Eisaku Kaji (Tokyo, JP); Yutaka Ohki (Tokyo, JP)
Assignee: FURUKAWA ELECTRIC CO., LTD.
H01S5/1014G02B6/2938G02B6/29362G02B6/32G02B6/34G02B6/4206G02B6/4215H01S5/02236H01S5/0421H01S5/1039H01S5/22
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Quick Facts
Patent No.
US 10,505,346
App. No.
16/027,938
Granted
Dec 10, 2019
Kind
B2
Abstract

A semiconductor laser device of an edge emission type, where a waveguide mode is multi-mode, is provided. The semiconductor laser device includes a first facet of the waveguide on an emission direction front side, the first facet having a first width in a horizontal direction perpendicular to a longitudinal direction of the waveguide; and a second facet of the waveguide on an emission direction rear side, the second facet having the first width, wherein a width of the waveguide, in the horizontal direction, is at least partially narrower than the first width, between the first facet and the second facet.

Claims (43)

1. A semiconductor laser device of an edge emission type, the semiconductor laser device comprising:

a multi-mode waveguide;

a first facet of the multi-mode waveguide on an emission direction front side, the first facet having a first width in a horizontal direction perpendicular to a longitudinal direction of the multi-mode waveguide; and

a second facet of the multi-mode waveguide on an emission direction rear side, the second facet having the first width, wherein

a width of the multi-mode waveguide, in the horizontal direction, is at least partially narrower than the first width, between the first facet and the second facet.

2. The semiconductor laser device according to claim 1 , wherein a ratio of length of a range having the first width, on the emission direction front side, relative to total length from the first facet on the emission direction front side to the second facet on the emission direction rear side is 20% or more and 56% or less.

3. The semiconductor laser device according to claim 1 , wherein a narrowest width of the multi-mode waveguide between the first facet on the emission direction front side and the second facet on the emission direction rear side is 30 μm or more and 75 μm or less.

4. The semiconductor laser device according to claim 1 , further comprising a current injection region from which current is injected into the multi-mode waveguide, the current injection region having a width, in the horizontal direction, that is at least partially narrower, between the first facet on the emission direction front side and the second facet on the emission direction rear side, than a width, in the horizontal direction, of the current injection region on the emission direction front side.

5. The semiconductor laser device according to claim 4 , further comprising a current non-injection region where the current injection region is not formed, the current non-injection region being provided on the emission direction front side or the emission direction rear side.

6. A semiconductor laser device of an edge emission type, the semiconductor laser device comprising:

a multi-mode waveguide;

a first facet of the multi-mode waveguide on an emission direction front side, the first facet having a first width in a horizontal direction perpendicular to a longitudinal direction of the multi-mode waveguide; and

a second facet of the multi-mode waveguide on an emission direction rear side, the second facet having the first width; and

a current injection region from which current is injected into the multi-mode waveguide, the current injection region having a width, in the horizontal direction, that is at least partially narrower, between the first facet on an emission direction front side and the second facet on an emission direction rear side, than a width, in the horizontal direction, of another region of the current injection region.

7. The semiconductor laser device according to claim 6 , further comprising a current non-injection region where the current injection region is not formed, the current non-injection region being provided on the emission direction front side or the emission direction rear side.

8. A semiconductor laser device of an edge emission type, the semiconductor laser device comprising:

a multi-mode waveguide;

a current injection region from which current is injected into the multi-mode waveguide, the current injection region having a width narrower than the multi-mode waveguide in a horizontal direction perpendicular to a longitudinal direction of the multi-mode waveguide; and

a coverage region having a coverage width obtained by dividing, by two, a result of subtracting the width of the current injection region from a width of the multi-mode waveguide in the horizontal direction, the coverage width being at least partially wider than 5 μm and 23 μm or less, between a first facet of the multi-mode waveguide on an emission direction front side and a second facet of the multi-mode waveguide on an emission direction rear side.

9. The semiconductor laser device according to claim 7 , wherein the coverage width is 15 μm or less.

10. The semiconductor laser device according to claim 7 , wherein the coverage width is 15.3% or less of the width of the multi-mode waveguide.

11. The semiconductor laser device according to claim 7 , wherein the coverage width is 10% or less of the width of the multi-mode waveguide.

12. A chip on submount comprising:

the semiconductor laser device according to claim 1 ; and

a mount being electrically conductive, wherein the semiconductor laser device is placed on the mount.

13. A chip on submount comprising:

the semiconductor laser device according to claim 6 ; and

a mount being electrically conductive, wherein the semiconductor laser device is placed on the mount.

14. A chip on submount comprising:

the semiconductor laser device according to claim 8 ; and

a mount being electrically conductive, wherein the semiconductor laser device is placed on the mount.

15. A semiconductor laser module comprising:

the chip on submount according to claim 12 ; and

at least one lens provided in an optical path between the semiconductor laser device and an optical fiber, thereby to couple the laser light radiated by the semiconductor laser device into the optical fiber.

16. A semiconductor laser module comprising:

the chip on submount according to claim 13 ; and

at least one lens provided in an optical path between the semiconductor laser device and an optical fiber, thereby to couple the laser light radiated by the semiconductor laser device into the optical fiber.

17. A semiconductor laser module comprising:

the chip on submount according to claim 14 ; and

at least one lens provided in an optical path between the semiconductor laser device and an optical fiber, thereby to couple the laser light radiated by the semiconductor laser device into the optical fiber.

18. The semiconductor laser module according to claim 15 , further comprising a diffraction grating fixing an emission wavelength of the semiconductor laser device, at an intermediate portion of the optical path from the semiconductor laser device to the optical fiber.

19. The semiconductor laser module according to claim 16 , further comprising a diffraction grating fixing an emission wavelength of the semiconductor laser device, at an intermediate portion of an optical path from the semiconductor laser device to the optical fiber.

20. The semiconductor laser module according to claim 17 , further comprising a diffraction grating fixing an emission wavelength of the semiconductor laser device, at an intermediate portion of an optical path from the semiconductor laser device to the optical fiber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2018
From: KAJI, EISAKU; OHKI, YUTAKA
To: FURUKAWA ELECTRIC CO., LTD.
Reel/Frame 046272/0180 →
Continuity (3)
Continuation PCTJP2017001023 · Jan 13, 2017
Provisional Application 62278234 · Jan 13, 2016
Related Publication 20180323579A1 · Nov 8, 2018