Claims
- 1. A semiconductor laser comprising:
a light-emitting surface; and a volume phase holographic element disposed on the light-emitting surface.
- 2. The semiconductor laser of claim 1, wherein the volume phase holographic element has a volume phase hologram formed therein.
- 3. A transmitter optical sub-assembly, comprising:
a semiconductor laser; an optical fiber; a lens disposed between the semiconductor laser and the optical fiber and configured to optically couple the semiconductor laser to the optical fiber; and a volume phase holographic element disposed between the semiconductor laser and the lens and configured to modify an aberration of the lens.
- 4. The transmitter optical sub-assembly of claim 3, wherein the volume phase holographic element is disposed on a light-emitting surface of the semiconductor laser.
- 5. A transmitter optical sub-assembly, comprising:
a semiconductor laser; an optical fiber; a volume phase holographic element disposed between the semiconductor laser and the optical fiber and configured to produce an annular light beam from a Gaussian light beam emitted by the semiconductor laser.
- 6. The transmitter optical sub-assembly of claim 5, wherein the volume phase holographic element is disposed on a light-emitting surface of the semiconductor laser.
- 7. A method of fabricating a light-emitting device, the method comprising:
depositing a layer of emulsion on a wafer of semiconductor laser diodes; forming volume phase holograms in the layer of emulsion; and separating individual ones of the semiconductor laser diodes from the wafer.
- 8. The method of claim 7, further comprising developing the layer of emulsion with volume phase holograms formed therein so as to produce volume phase holographic elements.
- 9. In a transmitter optical sub-assembly having a semiconductor laser and an emulsion layer disposed on a light-emitting surface of the semiconductor laser, a fiber, and a lens disposed between the semiconductor laser and the fiber, a method of modifying an aberration of the lens, the method comprising:
transmitting light emitted by the semiconductor laser down the fiber; reflecting the transmitted light back through the fiber such that it emits from an end of the fiber facing the semiconductor laser; and forming a volume phase hologram in the emulsion layer with light emitted by the semiconductor laser and light emitted from the end of the fiber.
Parent Case Info
[0001] The present application claims priority to, under 35 U.S.C. 119(e), U.S. Provisional Patent Application bearing serial No. 60/357,074, filed Feb. 12, 2002, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60357074 |
Feb 2002 |
US |