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Quantum Sensing and Communications applications for Exotic Optical Fibers manufactured from materials produced in space study.
Starbridge can help you:
Pain points mentioned in board meetings and strategic plans
Instantly outline and draft all requirements
Bring in your USPs and exploit competitor gaps
Starbridge can help you:
Get ahead of RFPs — target accounts planning budget or ending contracts soon
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Starbridge.ai books 30 - 40% of leads into meetings
Developed a method of using entangled-photon pairs to produce highly secure mobile communications that require mere milliwatts of power. Conventional gas argon-ion laser sources are too large, expensive, and power-intensive to use in portable applications. By contrast, glenn's patented optical quantum communication method produces entangled-photon pairs approximately a million times more efficiently than conventional sources, in a system that is small and light enough to be portable.
Posted Date
Sep 8, 2025
Due Date
Jul 17, 2026
Release: Sep 8, 2025
Close: Jul 17, 2026
Developed a method of using entangled-photon pairs to produce highly secure mobile communications that require mere milliwatts of power. Conventional gas argon-ion laser sources are too large, expensive, and power-intensive to use in portable applications. By contrast, glenn's patented optical quantum communication method produces entangled-photon pairs approximately a million times more efficiently than conventional sources, in a system that is small and light enough to be portable.
AvailableConducting market research to identify potential sources having the interest, skills, and ability to complete a thorough technology study and trade space analysis related to the viability of time-space-position optical tracking (t-spot) for use on test ranges as a time-space-position information (tspi) truth sensor in global navigation satellite system (gnss)-denied environments.
Posted Date
Dec 11, 2025
Due Date
Jan 30, 2026
Release: Dec 11, 2025
Close: Jan 30, 2026
Conducting market research to identify potential sources having the interest, skills, and ability to complete a thorough technology study and trade space analysis related to the viability of time-space-position optical tracking (t-spot) for use on test ranges as a time-space-position information (tspi) truth sensor in global navigation satellite system (gnss)-denied environments.
AvailableThe U.S. Army Contracting Command - Orlando issued a Sources Sought notice on behalf of the Test Resource Management Center (TRMC) to perform market research and identify potential sources capable of conducting a technology study and trade-space analysis for a Time‑Space‑Position Optical Tracking (T‑SPOT) TSPI prototype for GNSS‑denied test ranges. The effort focuses on developing system architecture, CONOPS, and modeling & simulation to determine whether a T‑SPOT system can provide high‑accuracy 3D TSPI over large test ranges using passive terrestrial landmarks and minimal SWaP for airborne integration. Responses are voluntary (this is not an RFP or grant) and the notice provides submission instructions via email and references eligibility through the TReX‑II consortium.
Posted Date
Dec 11, 2025
Due Date
Feb 20, 2026
Release: Dec 11, 2025
Close: Feb 20, 2026
The U.S. Army Contracting Command - Orlando issued a Sources Sought notice on behalf of the Test Resource Management Center (TRMC) to perform market research and identify potential sources capable of conducting a technology study and trade-space analysis for a Time‑Space‑Position Optical Tracking (T‑SPOT) TSPI prototype for GNSS‑denied test ranges. The effort focuses on developing system architecture, CONOPS, and modeling & simulation to determine whether a T‑SPOT system can provide high‑accuracy 3D TSPI over large test ranges using passive terrestrial landmarks and minimal SWaP for airborne integration. Responses are voluntary (this is not an RFP or grant) and the notice provides submission instructions via email and references eligibility through the TReX‑II consortium.
AvailablePublic-private partnership for the financing, design, and construction of two facilities, the National Quantum Facility -the NQF- and Quantum Works -the QW-, and related improvements.
Posted Date
Nov 14, 2025
Due Date
Jan 9, 2026
Release: Nov 14, 2025
Close: Jan 9, 2026
Public-private partnership for the financing, design, and construction of two facilities, the National Quantum Facility -the NQF- and Quantum Works -the QW-, and related improvements.
AvailableSurface intent from meeting minutes, budgets, and contract expirations. Influence RFP requirements before competitors ever see them.
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