Fuse Strengthens U.S. Nuclear Security with New Partnership
In a significant move to bolster national security infrastructure, Fuse Energy Technologies Corporation has entered into a five-year Cooperative Research and Development Agreement (CRADA) with the Nevada National Security Sites (NNSS). This agreement, disclosed on August 2, 2026, is set to deepen Fuse's collaborations with premier U.S. nuclear facilities and accelerate advancements in fusion energy technology.
Enhancing National Security through Innovation
The CRADA represents not just an extension of existing partnerships but a major step toward integrating advanced fusion research with U.S. national security objectives. It aims to validate and enhance next-generation technologies that underpin strategic deterrence and broaden the commercialization of fusion energy solutions, which are seen as pivotal for meeting future energy demands.
According to Daniel Lowe, Chief Scientist at NNSS, this partnership leverages the cutting-edge capabilities of Fuse and the vast technical expertise available at NNSS. The initial focus of their collaborative projects will include:
- - Next-generation fusion technology validation
- - Advancing tritium capabilities
- - Increasing neutron yield in pulsed fusion generators
- - Strengthening the pulsed power industrial base in the U.S.
This collaboration is framed within a broader context of synergy among the U.S. Department of Energy’s National Nuclear Security Administration (NNSA), to which both organizations contribute their unique resources and insights. By combining efforts with other established CRADAs involving Los Alamos and Sandia National Laboratories, Fuse is creating an integrated network focused on the advances in fusion energy.
The Role of Nevada National Security Sites
Nevada National Security Sites serves as a cornerstone in the nation’s nuclear security strategy, offering vital resources for high-energy density science and stockpile stewardship. The NNSS is known for conducting research and training that are essential to ensuring the effectiveness and safety of the nuclear deterrent capabilities of the United States.
Lisa Gordon-Hagerty, board director at Fuse, emphasized the importance of continued investment in technologies and partnerships. “This collaboration not only showcases our dedication to U.S. strategic deterrence but also aims to accelerate research in critical areas that will influence both national security and the future of energy in America,” she stated.
Innovating for the Future
JC Btaiche, founder and CEO of Fuse, highlighted the role of innovation as a core strength of the nation. He pointed out that partnerships such as this one are crucial for maintaining a competitive edge. As the initiative unfolds, it promises to foster technological developments that can solve complex challenges more effectively and swiftly.
About Fuse Energy Technologies
Through its various initiatives, Fuse Energy is at the forefront of the transition to fusion energy, pushing for a future where clean and reliable energy becomes a global norm. The company not only invests in advanced research but also provides essential radiation services necessary for progressing defense and energy initiatives, particularly through its subsidiary, Fuse Federal Enterprise, LLC.
As this partnership gains traction, it is expected to influence both the national security framework and the private sector’s role in advancing clean energy solutions. Both organizations are poised to make significant contributions to their respective fields—offering more than just technological advancements but a strategic approach to future energy and security challenges.
A Glimpse into the Future
As energy needs evolve and security challenges grow, collaborations like the one between Fuse and NNSS will be crucial in shaping the landscape of nuclear science and fusion technology. The long-term impacts of this research agreement may not only foster advancements in energy independence but also ensure a safer and more secure future for the United States and its allies.