Claims
- 1. An optoelectronic laser module, comprising:
a laser diode having an active region and a highly silvered reflecting surface; an optical conductor having a Bragg interference grating providing frequency-selective feedback, said highly silvered reflecting surface and said Bragg interference grating forming an optical resonator, said Bragg interference grating functioning as a fiber Bragg grating in said optical conductor; and a housing accommodating said laser diode, said housing having a holder coupling said optical conductor.
- 2. The module according to claim 1, including a coupling optical system disposed between said optical conductor and said laser diode in said housing.
- 3. The module according to claim 2, wherein said coupling optical system has a high-index coupling lens with a focal length of preferably less than two millimeters.
- 4. The module according to claim 3, wherein said high-index coupling lens is a lens selected from the group consisting of a silicon lens, a GaP lens, a SiC lens and an aspherical glass lens.
- 5. The module according to claim 1, wherein said laser diode has a rear facet which is coated with a highly reflecting layer and constitutes the highly silvered reflecting surface of said optical resonator.
- 6. The module according to claim 5, wherein said laser diode has a front facet which has an antireflection coating and via which light is emitted to said fiber Bragg grating or received thereby.
- 7. The module according to claim 6, wherein one of said front facet is aligned inclined to an optical axis of said laser diode.
- 8. The module according to claim 1, including a cylindrical ferrule and said optical conductor is embedded in said cylindrical ferrule that can be plugged into said holder of said housing.
- 9. The module according to claim 8, including a fiber plug connector and said optical conductor is fastened on said housing via said fiber plug connector.
- 10. The module according to claim 9, wherein said fiber plug connector can be detachably connected to said housing.
- 11. The module according to claim 1, wherein said holder of said housing is a cylindrical holder for receiving said optical conductor.
- 12. The module according to claim 1, wherein said housing has a coaxial geometry.
- 13. The module according to claim 1, wherein said optical conductor is a single-mode glass fiber having an end face.
- 14. The module according to claim 13, wherein said fiber Bragg grating is located in said single-mode glass fiber directly downstream of the said end face.
- 15. The module according to claim 14, wherein said end face of said single-mode glass fiber is chamfered.
- 16. The module according to claim 1, wherein said optical resonator has a length that is so short that a circulation frequency of light is above a desired modulation frequency of the module.
- 17. The module according to claim 16, wherein said length of said optical resonator is smaller than ten millimeters.
- 18. The module according to claim 1, wherein said laser diode is one of a plurality of laser diodes, said optical resonator is one of a plurality of optical resonators, and said fiber Bragg grating is one of a plurality of fiber Bragg gratings which are respectively constructed in a respective optical conductor, a spatial grating period of each of said fiber Bragg gratings differing with each optical conductor such that light of a different wavelength is respectively launched into individual optical conductors.
- 19. The module according to claim 2, wherein said coupling optical system has a high-index coupling lens with a focal length of preferably less than one millimeter.
- 20. The module according to claim 6, wherein one of said front facet and said rear facet are aligned inclined to an optical axis of said laser diode at an angle of approximately 1° to 5°.
- 21. The module according to claim 1, wherein said housing is a TO housing.
- 22. The module according to claim 1, wherein said module is used in dense wavelength division multiplex systems.
- 23. The module according to claim 8, wherein said ferrule can be detachably connected to said housing.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/DE01/02262, filed May 15, 2001, which designated the United States.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE01/02262 |
Jun 2001 |
US |
Child |
09970441 |
Oct 2001 |
US |