Claims
- 1. A multichannel beam deflector for deflecting a multichannel beam having plural nonparallel beam paths from an incident direction to a deflected direction while passing said multichannel beam through said beam deflector without deflection in a direction opposite to said incident direction, said beam deflector comprising a waveguide having an input coupler grating and a chirped output grating, said input grating coupler being positioned to receive the incident multichannel beam and including means for coupling the nonparallel beam paths of said incident beam at selected angles of incidence into said waveguide as coupled signal beams in a plurality of coupled modes, said waveguide including means for propagating said coupled signal beams to said output grating and said output grating including means for spatially separating said coupled signal beams for output, and said waveguide further including means for receiving said multichannel beam in a direction opposite to said incident direction and allowing said multichannel beam to pass through said waveguide.
- 2. The beam deflector of claim 1 wherein said waveguide is formed on a substrate and wherein said input coupler grating is a transverse electric grating mounted on said waveguide at a first position and said chirped grating is mounted on said waveguide at a second position.
- 3. The beam deflector of claim 1 wherein said waveguide is formed on a substrate and wherein said input coupler grating is a transverse magnetic grating mounted on said waveguide at a first position and said chirped grating is mounted on said waveguide at a second position.
- 4. A multichannel beam deflector for selectively deflecting a multichannel beam having plural nonparallel beam paths from an incident direction to a deflected direction, comprising:
- means for receiving a first incident beam in a first direction and allowing it to pass transversely therethrough;
- means for receiving a second incident beam representing said first incident beam reflected from a medium as a signal beam in a second direction substantially opposite to said first direction: and
- means for redirecting said signal beam by modal separation into a plurality of spatially separated output beams in a third direction, said means for redirecting said signal beam including a waveguide oriented to extend in said third direction and having an input coupler grating and a chirped output grating, said input coupler grating being positioned to receive said reflected signal beam and to couple said reflected signal beam incident at selected angles of incidence into said waveguide in a plurality of coupled modes, said waveguide being configured to propagate said coupled reflected signal beam to said output grating, and said output grating being configured to spatially separate said plurality of coupled modes for output.
- 5. The beam deflector of claim 4 wherein said waveguide is formed on a substrate and wherein said input coupler grating is a transverse electric grating mounted on said waveguide at a first position and said chirped grating is mounted on said waveguide at a second position.
- 6. The beam deflector of claim 4 wherein said waveguide is formed on a substrate and wherein said input coupler grating is a transverse magnetic grating mounted on said waveguide at a first position and said chirped grating is mounted on said waveguide at a second position.
- 7. The beam deflector of claim 4 wherein said waveguide has a thickness within an order of magnitude of the wavelengths of said first and second incident beams.
- 8. A multichannel beam deflector for selectively deflecting a multichannel beam having plural nonparallel beam paths from an incident direction to a deflected direction, comprising a waveguide structure having a coupler input grating and a chirped output grating configured to (1) receive a first incident beam in a first direction and allow it to pass transversely through said waveguide, (2) receive a second incident beam representing said first incident beam reflected from a medium as a signal beam in a second direction substantially opposite to said first direction, and (3) redirect said signal beam by modal separation into a plurality of spatially separated output beams in a third direction.
Parent Case Info
This application is a division of application Ser. No. 07/926,061, filed Aug. 4, 1992, now U.S. Pat. No. 5,353,273.
US Referenced Citations (16)
Foreign Referenced Citations (3)
Number |
Date |
Country |
383138 |
May 1990 |
EPX |
287623 |
Nov 1989 |
JPX |
127623 |
May 1990 |
JPX |
Non-Patent Literature Citations (3)
Entry |
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Aiki et al., IEEE Journal of Quantum Electronics, vol. QE 13, No. 4, Apr. 1977, "A Frequency Multiplexing Light Source with Monolithically Integrated Distributed Feedback Dione Lasers." |
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Divisions (1)
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Number |
Date |
Country |
Parent |
926061 |
Aug 1992 |
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