Claims
- 1. An LWIR optical filter detector device, comprising:
- a semiconductor substrate material;
- a first impurity layer created in the substrate for absorbing out of band energy and transmitting LWIR energy above a minimum transmittance level within a passband, the impurity layer being doped with an impurity to a concentration of 10.sup.17 -10.sup.18 such that the impurity layer has a separation of states at cryogenic temperatures for transforming the absorbed out of band energy into free carriers;
- a second impurity layer created in the substrate;
- means for cooling the first and second impurity layers within the substrate to cryogenic temperatures of approximately 15 degrees Kelvin;
- a blocking layer within the substrate for isolating free carriers created from the absorbed out of band energy; and
- an infrared detector within the substrate, such that the detector senses the transmitted energy, the detector adding a cutoff at a maximum transmittance level of the passband such that a combination of the minimum transmittance level of created by the impurity layer and the maximum transmittance level created by the detector provides a passband filter.
- 2. The optical filter of claim 1 wherein said substrate comprises semiconductor silicon.
- 3. The optical filter of claim 2 wherein said substrate comprises semiconductor germanium.
- 4. The optical filter of claim 2 wherein said. impurity is gallium.
- 5. The infrared detector of claim 1 wherein the out of band energy includes light having wavelengths over a selected threshold wavelength, and the passband energy includes light having wavelengths below said threshold wavelength.
Parent Case Info
This is a continuation of application Ser. No. 529,414, filed May 29, 1990 now abandoned.
US Referenced Citations (8)
Non-Patent Literature Citations (1)
Entry |
Krabach et al, "Extrinsic Germanium Blocked Impurity Band Detector," Proceedings of the Third Infrared Detector Technolgy Workshop, pp. 117-123, Oct. 1989. |
Continuations (1)
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Number |
Date |
Country |
Parent |
529414 |
May 1990 |
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