Claims
- 1. An optical device, comprising:
a broad area laser for lasing at a first wavelength; a multimode active-doped tapered waveguide laser; and a multimode passive planar mode transformer coupling and tapering from the broad area laser to the multimode active-doped tapered waveguide laser.
- 2. The optical device of claim 1, wherein the broad area laser comprises a broad area laser diode (BALD) having about a 100×1 micrometer beam cross-section and a wavelength susceptible to excite the dopant of the active media of the multimode active-doped tapered waveguide laser.
- 3. The optical device of claim 2, wherein the broad area laser lases at about 915 nm as a pump wavelength.
- 4. The optical device of claim 2, wherein the multimode passive planar mode transformer has an input core cross section of about 100×3 micrometers and an output core cross section of about 15×3 micrometers for providing an anamorphic coupling element that reduces the input pump linear divergence in the “fast axis”.
- 5. The optical device of claim 4, wherein the multimode active-doped tapered waveguide laser comprises a planar Yb-doped brightness converter.
- 6. The optical device of claim 4, wherein the multimode active-doped tapered waveguide laser comprises a planar brightness converter having an input core cross section of about 15×3 micrometers and an output core-cross section of about 3×3 micrometers.
- 7. The optical device of claim 6, wherein the planar brightness converter has a first planar section having a symmetrical optically-active core cross section of about 15×3 micrometers at an input end and at an output end for lasing at a second wavelength with an actively doped ion, and a second asymmetrical planar section tapering from an input core cross section of about 15×3 micrometers to an output core cross section of about 3×3 micrometers.
- 8. The optical device of claim 7, wherein the planar brightness converter has a multimode input reflector coupled to the input end of the first planar section before the second asymmetrical planar section, the multimode input reflector provides about 99% reflectivity for reflecting the lasing output of the second wavelength.
- 9. The optical device of claim 8, wherein the planar brightness converter has a multimode output reflector coupled to the output end of the first planar section, the multimode output reflector provides about 99% reflectivity for reflecting about 99% of the first wavelength.
- 10. The optical device of claim 8, wherein the planar brightness converter has a single-mode reflector coupled to the output core of the second section for reflecting about 5-10% of the second wavelength.
- 11. The optical device of claim 10, wherein the first wavelength is about 915 nm, the second wavelength is about 980 nm, and the actively doped ion is Yb.
- 12. The optical device of claim 10, wherein the first wavelength is in a range between about 1480-1550 nm, the second wavelength is about 1600 nm, and the actively doped ion is Er.
- 13. The optical device of claim 1, wherein the multimode passive planar mode transformer comprises a first mode adapter.
- 14. The optical device of claim 7, wherein the second asymmetrical planar comprises a second mode adapter.
- 15. The optical device of claim 7, wherein the first planar section of the planar brightness converter has an active waveguide medium for three-level lasing with the actively doped ion.
- 16. The optical device of claim 8, wherein the multimode input reflector comprises a multimode Bragg grating.
- 17. The optical device of claim 8, wherein the multimode input reflector comprises a bulk mirror.
- 18. The optical device of claim 9, wherein the multimode output reflector comprise a multimode output grating for defining an inner laser cavity with a facet of the broad area laser.
- 19. The optical device of claim 10, wherein the single-mode reflector and the multimode input reflector comprise a pair of gratings for defining an outer laser cavity.
- 20. The optical device of claim 4, wherein the multimode active-doped tapered waveguide laser comprises a planar brightness converter having a multimode planar lasing member and a tapered fiber member.
CLAIM OF PRIORITY
[0001] This is a continuation-in-part of U.S. parent application Ser. No. 09/968,354 filed on Sep. 27, 2001 and of U.S. parent application Ser. No. 09/808,270, filed on Mar. 14, 2001, the content of which are relied upon and incorporated herein by reference in its entirety, and the benefit of priority under 35 U.S.C. §120 is hereby claimed.
Continuation in Parts (2)
|
Number |
Date |
Country |
| Parent |
09968354 |
Sep 2001 |
US |
| Child |
10456663 |
Jun 2003 |
US |
| Parent |
09808270 |
Mar 2001 |
US |
| Child |
10456663 |
Jun 2003 |
US |