Claims
- 1. A method for operating a laser comprising a solid material for passing optical energy, an input waveguide in said solid material, a base reflector disposed along an optical axis, a plurality of output waveguides encountering said input waveguide at intersection regions along said input waveguide, a plurality of electrically-switchable beam redirectors disposed along said input waveguide at said intersection regions, each one of said electrically-switchable beam redirectors comprising a first electrically-conductive material forming a first electrode, said first electrode confronting said solid material and bridging at least one electrically-controllable element in said solid material, a plurality of gratings disposed along said output waveguides defining electrically-selectable retroreflectors further defining cavities between said base reflectors and said gratings, an optical amplifier disposed along an optical axis, said optical axis traversing said solid material, and an optical coupling means disposed between said solid material and said optical amplifier along said optical axis, said method comprising:
- selectively activating said redirectors simultaneously in order to support multiple simultaneous operation at different frequencies.
- 2. A method for operating a laser comprising a solid material for passing optical energy, an input waveguide in said solid material, a base reflector disposed along an optical axis, a plurality of output waveguides encountering said input waveguide at intersection regions along said input waveguide, a plurality of electrically-switchable beam redirectors disposed along said input waveguide at said intersection regions, each one of said electrically-switchable beam redirectors comprising a first electrically-conductive material forming a first electrode, said first electrode confronting said solid material and bridging at least one electrically-controllable element in said solid material, a plurality of gratings disposed along said output waveguides defining electrically-selectable retroreflectors further defining cavities between said base reflectors and said gratings, an optical amplifier disposed along an optical axis, said optical axis traversing said solid material, and an optical coupling means disposed between said solid material and said optical amplifier along said optical axis, said method comprising:
- selectively activating said redirectors in order to support operation along said output waveguides.
- 3. A method for operating a laser comprising a solid material for passing optical energy, an input waveguide in said solid material, a base reflector disposed along an optical axis, a plurality of output waveguides encountering said input waveguide at intersection regions along said input waveguide, a plurality of electrically-switchable beam redirectors disposed along said input waveguide at said intersection regions, each one of said electrically-switchable beam redirectors comprising a first electrically-conductive material forming a first electrode, said first electrode confronting said solid material and bridging at least one electrically-controllable element in said solid material, a plurality of gratings disposed along said output waveguides defining electrically-selectable retroreflectors further defining cavities between said base reflectors and said gratings, an optical amplifier disposed along an optical axis, said optical axis traversing said solid material, and an optical coupling means disposed between said solid material and said optical amplifier along said optical axis, said method comprising:
- selectively activating said redirectors in order to support operation at different frequencies.
- 4. A method for operating a laser comprising a solid material for passing optical energy, an input waveguide in said solid material, a base reflector disposed along an optical axis, a plurality of output waveguides encountering said input waveguide at intersection regions along said input waveguide, a plurality of electrically-switchable beam redirectors disposed along said input waveguide at said intersection regions, each one of said electrically-switchable beam redirectors comprising a first electrically-conductive material forming a first electrode, said first electrode confronting said solid material and bridging at least one electrically-controllable element in said solid material, a plurality of gratings disposed along said output waveguides defining electrically-selectable retroreflectors further defining cavities between said base reflectors and said gratings, an optical amplifier disposed along an optical axis, said optical axis traversing said solid material, and an optical coupling means disposed between said solid material and said optical amplifier along said optical axis, said method comprising:
- selectively activating said redirectors in order to support operation along said output waveguides; and
- coupling the optical amplifier into said input waveguide.
- 5. A method for operating a laser comprising:
- coupling optical energy between an optical amplifier disposed along an optical axis and an electrically-controllable switching array disposed along said axis, said switching array comprising a solid material for passing optical energy containing a plurality of electrically-switchable beam redirectors, each one of said beam redirectors comprising an electrically-conductive material forming an electrode, said electrode confronting said solid material and bridging at least one electrically-controllable element in said solid material;
- selectively activating said redirectors by means of said electrode to establish at least one optical coupling between said optical amplifier and at least one of a plurality of gratings disposed along output axes traversing said intersection regions, said gratings thus being electrically-selectable retroreflectors; and
- activating said optical amplifier to support lasing operation between a base reflector disposed along said optical axis and along at least one of said output axes.
Parent Case Info
This is a Division of application Ser. No. 08/304,042 is U.S. Pat. No. 5,703,710 filed Sep. 9, 1994 the disclosure of which is incorporated by reference.
US Referenced Citations (7)
Divisions (1)
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Number |
Date |
Country |
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304042 |
Sep 1994 |
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