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Special Notice Expired 1 notice

TECHNOLOGY/BUSINESS OPPORTUNITY Optimized Placement of Quartz Rotators in Reverser and Other Solutions to Mitigating Thermal Depolarization IL-13924and2025-198

Solicitation IL-13924and2025-198 Copied Notice ID 01fc91cd64544a61b396d584479456b6 Copied ENERGY, DEPARTMENT OF — LLNS – DOE CONTRACTOR
SAM.gov
Posted
Mar 30, 2026
Deadline
Apr 30, 2026
Set-aside
None
NAICS
334413
PSC
N/A

Summary

AI-generated · Mar 31, 2026

LLNL is offering a licensing/collaboration opportunity to develop and commercialize its Optimized Placement of Quartz Rotators in Reverser and Other Solutions to Mitigating Thermal Depolarization, a passive approach to reduce thermal-stress–induced depolarization in high-average-power and high-peak-power laser systems. The goal is to provide cost-effective architectures that suppress depolarization, improving laser power handling, repetition rate, beam quality, and system longevity, instead of relying on expensive optically active rotators or magneto-optical devices. Potential applications span high-power laser systems, compact laser particle accelerators, fusion-class laser drivers, high-precision manufacturing, EUV lithography, and related high-energy density and imaging fields.

To express interest, submit an electronic or written statement including your company name and address, a point of contact with phone number, and a description of your corporate expertise and facilities relevant to commercializing this technology. Include a subject line with the Notice ID and/or title and direct it to the primary and secondary points of contact; responses should be directed to LLNL’s Innovation and Partnerships Office. Non-disclosure of proprietary information will apply, and additional details are available on the LLNL IPO website.

Opportunity: Lawrence Livermore National Laboratory (LLNL), operated by the Lawrence Livermore National Security (LLNS), LLC under contract no. DE-AC52-07NA27344 (Contract 44) with the U.S. Department of Energy (DOE), is offering the opportunity to enter into a collaboration to further develop and commercialize its Optimized Placement of Quartz Rotators in Reverser and Other Solutions to Mitigating Thermal Depolarization. Background: Depolarization of laser optical components from thermal stress remains a major limitation in high-average-power laser amplifiers. Non-uniform thermal gradients induce mechanical stresses and birefringence. If left uncompensated, laser performance degrades in power/energy, repetition rate, beam quality, coherence and may even lead to parasitic mechanisms and internal laser damage. The current solutions that mitigate or compensate these effects are often either complex, costly optically active rotator methods or uses magneto-optical effects to restore the polarization, e.g., extremely costly Faraday rotators. Description: Novel and cost-effective series of architectures and techniques relating for passive mitigation of thermal depolarization in high average power and peak power laser systems. Advantages/Benefits: Cost effective thermal depolarization Increased laser performance Longer system life Potential Applications: Damage tolerant laser architectures capable of accessing new tradespace in high average power or high peak power laser systems applied to compact laser particle accelerators, fusion energy class laser drivers. Other applications include high-precision materials processing, extreme ultraviolet (EUV) lithography, x-ray and gamma ray source generators, laser-based remote-sensing, high-resolution imaging in astrophysics, high-energy density physics. Development Status: Current stage of technology development: TRL ? 0-2 ? 3-5 ? 5-9 LLNL is seeking industry partners with a demonstrated ability to bring such inventions to the market. Moving critical technology beyond the Laboratory to the commercial world helps our licensees gain a competitive edge in the marketplace. All licensing activities are conducted under policies relating to the strict nondisclosure of company proprietary information. Please visit the IPO website at https://ipo.llnl.gov/resources for more information on working with LLNL and the industrial partnering and technology transfer process. Note: THIS IS NOT A PROCUREMENT. Companies interested in commercializing LLNL's Optimized Placement of Quartz Rotators in Reverser and Other Solutions to Mitigating Thermal Depolarization should provide an electronic OR written statement of interest, which includes the following: Company Name and address. The name, address, and telephone number of a point of contact. A description of corporate expertise and/or facilities relevant to commercializing this technology. Please provide a complete electronic OR written statement to ensure consideration of your interest in LLNL's Optimized Placement of Quartz Rotators in Reverser and Other Solutions to Mitigating Thermal Depolarization. The subject heading in an email response should include the Notice ID and/or the title of LLNL s Technology/Business Opportunity and directed to the Primary and Secondary Point of Contacts listed below. Written responses should be directed to: Lawrence Livermore National Laboratory Innovation and Partnerships Office P.O. Box 808, L-779 Livermore, CA 94551-0808 Attention: 2025-198

From Special Notice posted on Mar 30, 2026

Notice history

1
  1. Special Notice LATEST Posted Mar 30, 2026 View

Details

Solicitation number IL-13924and2025-198
Notice ID 01fc91cd64544a61b396d584479456b6
Notice type Special Notice
NAICS 334413
Place of performance Livermore, California
Archive date May 15, 2026

Award Information

Not yet awarded

Documents

No files available

View on SAM.gov

Contacts

primary
Alex Hess

Email

Phone

secondary
Charlotte Eng

Email

Phone

Agency

ENERGY, DEPARTMENT OF
ENERGY, DEPARTMENT OF
LLNS – DOE CONTRACTOR

Place of Performance

Livermore, California
USA

Dates

Posted Mar 30, 2026 4 months ago
Last Updated Aug 06, 2026 2 days ago
Due Apr 30, 2026 3 months ago