ClosedSpecial Notice
Energy, Department of contract category

TECHNOLOGY LICENSING OPPORTUNITY Solid State Nuclear Lasing Sensors: Revolutionizing In-Pile Reactor Measurements

Energy, Department of · ENERGY, DEPARTMENT OF

This notice is not accepting responses (deadline was Oct 31, 2024, 8:00 PM EDT).

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Response deadline
Oct 31, 2024, 8:00 PM EDT
Posted
Oct 30, 2023
Solicitation
BA-1125
Set-aside
None listed
Place of performance
Idaho Falls, ID, USA
Contracting office
BATTELLE ENERGY ALLIANCE�DOE CNTR · Idaho Falls · ID
Source
SAM.gov · updated May 9, 2026

Description

TECHNOLOGY LICENSING OPPORTUNITY Solid State Nuclear Lasing Sensors: Revolutionizing In-Pile Reactor Measurements Harness the power of solid-state lasing sensors for real-time, in-pile reactor power and flux measurements, enhancing accuracy and spatial resolution. Overview: Traditional nuclear reactor power measurement methods rely on external instruments, often behind shielding, resulting in limited spatial resolution and potential inaccuracies due to spectral shifts and electronic drifts. Description: This groundbreaking technology employs solid state lasing media/crystals, excited by various radiations within a reactor core, to produce laser light. The intensity of this light directly correlates with reactor power and radiation flux. By utilizing multiple lasing media doped with different fissile species, the instrument can determine both reactor power and energy spectrum. These passive instruments, requiring no in-core power, can be strategically placed within the reactor for real-time power/flux distribution measurements, with data transmitted via a simple fiber optic lead-out. Benefits: � Direct in-pile measurement enhances accuracy and spatial resolution. � Real-time data integration potential for reactor control systems. � Simplified design with a single optical fiber lead-out ensures durability in high radiation environments. � Cost-effective solution for commercial nuclear power plants. Applications: � Commercial nuclear power plants. � Micro nuclear reactors, especially in the emerging market. � Space power and nuclear thermal propulsion reactors for remote operations. Development Status: TRL 3 - Analytical and experimental proof-of-concept for critical functions/characteristics. IP Status: US Patent Application No. 17/758,395, �Solid State Nuclear Pumped Lasing Sensors for In Pile Reactor Power and Flux Measurement, Direct Energy Conversion, and Related Methods,� BEA Docket No. BA-1125. For a deeper understanding of this transformative technology and potential collaborations, please contact Andrew Rankin at td@inl.gov. Managed by Battelle Energy Alliance, LLC, the Idaho National Laboratory (INL) is eager to form commercial partnerships. We aim to license our intellectual property to adept entities, especially small businesses and start-ups, to bring these innovations to the market. Explore collaboration opportunities with INL at https://inl.gov/inl-initiatives/technology-deployment.

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Typical award size

$42,779

Middle of the pack for similar past awards

Most similar awards fall between $20,954 and $105,045

Lower end$20,954Typical$42,779Higher end$105,045
Based on 411 similar awardsSame industry code (334513)Prime contracts (not umbrella IDVs)

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Drawn from official USAspending contract records in our index. Always confirm requirements on the SAM.gov notice before you bid.

Intelligence only — not legal advice or a guarantee of award. Always verify requirements on the official SAM.gov notice. Past award amounts are public history, not a suggested bid or prediction. Notice ID 3155f5e7207a42a9926022077765c7c7.

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