Claims
- 1. An optical amplifier comprising:an elongated slab of a solid state lapsing material defining a longitudinal axis having opposing end faces and a plurality of lateral surfaces, said lateral surfaces being generally parallel to said longitudinal axis of said slab, said end faces cut at an angle with respect to a normal axis to the said longitudinal axis; a pump light source; and one or more optical fibers for optically cowling said pump light source to said slab.
- 2. The optical amplifier recited in claim 1, wherein said slab is a composite slab formed from two or more materials forming a central absorbing section sandwiched between two nonabsorbing sections.
- 3. The optical amplifier as recited in claim 2, wherein said two or more sections are diffusion bonded together defining one or more diffusion bond interfaces.
- 4. The optical amplifier as recited in claim 2, wherein said nonabsorbing sections are formed from an undoped solid state lapsing material.
- 5. The optical amplifier as recited in claim 4, wherein said undoped solid state lapsing material is yttrium-aluminum-garnet (YAG).
- 6. The optical amplifier as recited in claim 2, wherein said absorbing section is formed from a doped solid state lapsing material.
- 7. The optical amplifier as recited in claim 6, wherein said doped solid state lapsing material is Yb doped YAG.
- 8. The optical amplifier as recited in claim 1, including an antireflective coating applied to a portion of said lateral surfaces defining windows.
- 9. The optical amplifier as recited in claim 8, wherein said antireflective coating is selected for the wavelength of the pump beam.
- 10. An optical amplifier for receiving an input light source and transmitting amplified light, comprising:an elongated slab of a solid state lapsing material defining a longitudinal axis having opposing end faces and a plurality of lateral surfaces, said lateral surfaces being generally parallel to said longitudinal axis of said slab, said end faces cut at an angle with respect to a normal axis to the said longitudinal axis; a coating applied to said lateral surfaces defining windows for receiving said input light source and transmitting said amplified light; and one or more optical fibers for optically coupling said pump light source to said end faces in said slab.
- 11. The optical amplifier as recited in claim 10, wherein said coating is an antireflective coating.
- 12. The optical amplifier as recited in claim 11, wherein said antireflective coating is selected for the wavelength of the input light.
- 13. An optical amplifier array comprising:a plurality of stacked elongated slabs of solid state lapsing materials having opposing end faces and a plurality of lateral surfaces, said end faces cut at an angle relative to the plane of a said slab; a plurality of pump light sources; and a plurality of optical fibers for optically coupling said plurality of pump light sources to said plurality of slabs.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part o patent application Ser. No. 09/111,080, filed on Jul. 7, 1998, now U.S. Pat. No. 6,094,297 entitled “End P damper Zig-Zag Laser Gain Medium”, by Hagop Injeyan and Carolyn S. Hoefer and is related to the following commonly owned co-pending application: Ser. No. 09/104,477, now U.S. Pat. No. 6,178,046 filed on Jun. 25, 1998, entitled, “Laser with Two Orthogonal Zig-Zag Gain Media for OPD Compensation”, by Injeyan et al.
US Referenced Citations (30)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09/111080 |
Jul 1998 |
US |
Child |
09/580726 |
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US |