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Closed Mon, Oct 5. Responses were due Thu, Oct 1 · 5:00 PM MT. This notice is kept for reference and no longer takes responses.

Special noticeFederal buyer

TECHNOLOGY LICENSING OPPORTUNITY: Electrically Pumped Nanocrystal Laser Diode

ENERGY, DEPARTMENT OF, New Mexico · ENERGY, DEPARTMENT OF · TRIAD - DOE CONTRACTOR
Unverified · check sourceUpdated Oct 6 · Updated
Responses dueThu, Oct 15:00 PM MT · New Mexico timeClosed
PostedWed, Jul 22No amendments since
Solicitation no.S-167655SAM.gov
Set-asideNoneOpen to all firms

What the agency is buying

from the notice as published

The Electrically Pumped Nanocrystal Laser Diode is a solution-processed laser technology developed by scientists at Los Alamos National Laboratory that enables electrically driven laser emission using engineered colloidal nanocrystals, also known as colloidal quantum dots. By overcoming long-standing challenges associated with nonradiative Auger recombination, heat build-up and optical losses in…

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Details

Place of performance
Los Alamos, New Mexico
Buyer type
Federal
Notice type
Special Notice
Solicitation no.
S-167655
NAICS
NAICS 334413 (Semiconductor and Related Device Manufacturing)
Size standard
1,250 employees SBA table, NAICS 334413
PSC
PSC 5960 (ELECTRON TUBES AND ASSOCIATED HARDWARE)
Amendments
None since Jul 22
Contact
Caleb Ledgerwood
Office
TRIAD - DOE CONTRACTOR
Email
licensing@lanl.gov

Not stated in the notice: estimated value, contract type, period of performance, evaluation criteria, local-presence rule, quantity, FOB terms. Check the bid documents.

Contact details from the source notice. Contact the buyer only about this solicitation.

Key dates

Wed, Jul 22Posted
Not statedQuestions due
Thu, Oct 1 · 5:00 PM MTResponses due · closed
Closed
Mon, Oct 5

Change log

verified Tue, Oct 6 · 10:30 PM MT
  1. Posted · Special NoticeWed, Jul 22 · 5:40 AM MT
  2. ClosedMon, Oct 5 · 4:35 AM MT
  3. Updated · description text changedTue, Oct 6 · 10:33 PM MT

Change log starts Oct 5, 2026 (tracking began); earlier amendments at SAM.gov are being pulled in.

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Notice as published

TECHNOLOGY LICENSING OPPORTUNITY: Electrically Pumped Nanocrystal Laser Diode

The Electrically Pumped Nanocrystal Laser Diode is a solution-processed laser technology developed by scientists at Los Alamos National Laboratory that enables electrically driven laser emission using engineered colloidal nanocrystals, also known as colloidal quantum dots. By overcoming long-standing challenges associated with nonradiative Auger recombination, heat build-up and optical losses in charge-transporting device layers, the technology achieves efficient room-temperature optical gain in a platform compatible with scalable, lower-cost manufacturing and on-chip integration. This innovation opens a new pathway toward compact, high-performance optical amplifiers and laser sources for integrated photonics, optical communications, sensing and next-generation optoelectronic systems.

The Challenge: For years, researchers have sought to develop low-cost lasers that can be made from solution-based materialsessentially printable semiconductor inksbut electrically pumped operation has remained elusive. The colloidal quantum dots used as the gain medium suffered from three fundamental limitations: rapid nonradiative energy loss through Auger recombination, excessive heat generation under the high current densities required for lasing, and strong optical losses in the charge-transporting layers of conventional LED device architectures. Together, these challenges prevented the buildup of sufficient optical gain for laser operation.

As a result, electrically pumped nanocrystal lasers remained a long-sought but unrealized goal, limiting the ability to create scalable, lower-cost, chip-integrated laser sources. The Electrically Pumped Nanocrystal Laser Diode overcomes these fundamental barriers and turns a long-standing scientific challenge into a commercially viable pathway.

Problems Solved: The Electrically Pumped Nanocrystal Laser Diode overcomes the key technical barriers that have prevented electrically powered nanocrystal lasers from becoming practical. It suppresses carrier losses caused by Auger recombination, incorporates a device architecture that effectively manages heat and enables stable operation at high current densities, and reduces optical losses that once overwhelmed light amplification. By combining engineered nanocrystals with a heat-managed current-focusing architecture and an integrated low-loss photonic waveguide, the technology achieves strong net optical gain and provides a practical pathway toward electrically pumped nanocrystal laser diodes compatible with scalable, low-cost manufacturing.

Key Advantages: Electrically Pumped Laser Platform Enables room-temperature electrically driven optical gain and provides a practical pathway toward electrically pumped nanocrystal laser diodes, overcoming a long-standing challenge in solution-processed photonics. Scalable, Lower-Cost Manufacturing Employs solution-processable colloidal quantum dots compatible with high-throughput fabrication and integration on a wide variety of substrates. High Efficiency and Stable Operation Engineered nanocrystals suppress nonradiative Auger recombination, while a heat-managed device architecture enables stable operation at the high current densities required for lasing.

Low-Loss Photonic Architecture An integrated low-loss waveguide enhances optical confinement and net optical gain, enabling efficient light amplification and high optical output. Platform Versatility Applicable to laser diodes, optical amplifiers, integrated photonic circuits, and next-generation optoelectronic systems.

Market Applications: Optical Communications Laser sources and optical amplifiers for fiber-optic telecommunications and high-speed data communications. Integrated Photonics On-chip lasers and amplifiers for silicon photonics, optical interconnects, and photonic integrated circuits. Sensing & Instrumentation Compact coherent light sources for spectroscopy, environmental monitoring, metrology, and precision sensing.

Defense & Aerospace Optical systems for lidar, free-space optical communications, imaging, navigation, and advanced sensing. Consumer Electronics & Display Technologies Miniaturized laser sources for next-generation consumer devices, displays, and wearable technologies. Medical & Life Sciences Light sources for biomedical imaging, diagnostics, flow cytometry, and analytical instrumentation.

Development Status: TRL 4 US Patent pending LA-UR-26-25635 LANL Tech Partnerships: Unlock the Innovative Potential Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products. LANL's licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements.

For specific discussions, please contact [email on the source notice].

Note: This is not a call for external services for the development of this technology. https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology m.lanl.gov/tech-search

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