Claims
- 1. A microchannel electron multiplier comprising:
- a plurality of optical fibers each including a cladding layer formed of a non-etchable material bounding an internal space from which core material formed of an etchable material has been removed;
- a tube surrounding said optical fibers; and
- a plurality of support rods formed of a non-etchable material substantially surrounding the optical fibers at a region along the inside periphery of said tube.
- 2. The microchannel electron multiplier of claim 1 wherein said cladding layer has an electron emissive region.
- 3. The microchannel electron multiplier of claim 1 wherein each of said support rods comprises a plurality of optical fibers, each fiber having a core and a cladding surrounding the core and being a solid tube.
- 4. The microchannel electron multiplier of claims 1 wherein each of said support rod comprises an optical fiber having a core and a cladding surrounding the core and being a solid tube.
- 5. The microchannel electron multiplier of claim 2 wherein said optical fibers, said support optical fibers and said tube have substantially the same softening temperature.
- 6. The microchannel electron multipler of claim 1 wherein said optical fiber cladding layer, said tube and said support optical fibers are formed of a high lead content glass.
- 7. The microchannel electron multiplier of claim 1 wherein the optical fibers are formed into bundles.
- 8. The microchannel electron multiplier of claim 7 wherein the cross-sectional area of each of the support rods is substantially the same as one of the optical fiber bundles.
- 9. The microchannel electron multiplier of claim 7 wherein the optical fiber bundles and the support rods have a hexagonal configuration.
Parent Case Info
This application is a division of application Ser. No. 07/147,068, filed Jan. 25, 1988, now U.S. Pat. No. 4,853,020, which is a continuation of Ser. No. 06/781,842, filed Sept. 30, 1985, now abandoned.
US Referenced Citations (4)
Divisions (1)
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Date |
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Parent |
147068 |
Jan 1988 |
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Continuations (1)
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781842 |
Sep 1985 |
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