Large-area Photocathodes (LAP)
| Agency: | DEPT OF DEFENSE |
|---|---|
| State: | Federal |
| Type of Government: | Federal |
| FSC Category: |
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| NAICS Category: |
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| Posted Date: | Nov 20, 2024 |
| Due Date: | Dec 18, 2024 |
| Solicitation No: | DARPA-PS-25-01 |
| Original Source: | Please Login to View Page |
| Contact information: | Please Login to View Page |
| Bid Documents: | Please Login to View Page |
Description
APEX Accelerators are an official government contracting resource for small businesses. Find your local APEX Accelerator (opens in new window) for free government expertise related to contract opportunities.
APEX Accelerators are funded in part through a cooperative agreement with the Department of Defense.
The APEX Accelerators program was formerly known as the Procurement Technical Assistance Program (opens in new window) (PTAP).
- Contract Opportunity Type: Solicitation (Original)
- Original Published Date: Nov 20, 2024 05:11 pm EST
- Original Date Offers Due: Dec 18, 2024 05:00 pm EST
- Inactive Policy: Manual
- Original Inactive Date: Jan 18, 2025
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Initiative:
- None
- Original Set Aside:
- Product Service Code: AC13 - NATIONAL DEFENSE R&D SERVICES; DEPARTMENT OF DEFENSE - MILITARY; EXPERIMENTAL DEVELOPMENT
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NAICS Code:
- 541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)
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Place of Performance:
Photocathode performance can be characterized by attributes such as quantum efficiency (QE), lifetime, and mean transverse energy (MTE). Metals such as copper and magnesium have low QE but are well-understood, robust, and easy to obtain. CsTe is a leading semiconductor used within the accelerator community with a reasonable balance of QE, lifetime, and MTE. Diamond has been examined for switching applications but may hold promise as a photocathode. Other materials, such as the alkali antimonides, could offer high QE operation at longer wavelengths but may have lifetime, process, and handling challenges. In addition, recent work has also focused on increasing QE and lowering emittance through patterning techniques. ,
LAP seeks manufacturable photocathode material systems with high quantum efficiency that can be produced in large areas with substantial lifetimes and manageable handling requirements. LAP will develop and produce photocathodes that will be incorporated by the government team into a prototype system.
- 675 NORTH RANDOLPH STREET
- ARLINGTON , VA 222032114
- USA
- BAA Coordinator
- DARPA-PS-25-01@darpa.mil
- Nov 20, 2024 05:11 pm ESTSolicitation (Original)
Related Document
| Dec 10, 2024 | [Solicitation (Updated)] Large-area Photocathodes (LAP) |
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