Liberty Fusion develops compact fusion reactors that fuse hydrogen atoms at 100 million degrees to generate clean, abundant energy.
Funding
Funding not disclosed
Founders
Product
Problem
Current energy systems rely heavily on fossil fuel extraction and combustion, leading to high carbon emissions, environmental degradation, and dependence on finite resources. Existing large-scale nuclear and renewable solutions often face challenges related to waste management, land use, and intermittency, limiting the ability to provide consistent, clean power at the point of use.
Solution
Liberty Fusion designs compact fusion reactors that fuse hydrogen atoms at temperatures of 100 million degrees to produce clean energy directly at the site of consumption. By generating fuel in‑situ rather than extracting it, the reactors eliminate carbon emissions and avoid long‑lived radioactive waste. The high energy density—ten million times more energy per gram than coal—enables a small footprint, making the technology suitable for deployment in diverse settings, from industrial facilities to remote communities. Engineered in the United States, the reactors aim to provide a domestic, abundant power source that can replace traditional fossil‑fuel generation worldwide.
Target Audience
Primary customers include industrial energy users, utility operators, and remote or off‑grid facilities seeking a reliable, low‑emission power source, as well as governments and organizations pursuing domestic energy security.
Features
- Compact reactor architecture capable of achieving 100 million‑degree plasma conditions for hydrogen fusion
- On‑site fuel creation eliminates the need for external fuel supply chains and mining operations
- Energy output density ten million times greater than coal per gram of fuel
- Zero carbon emissions and no long‑lived radioactive waste throughout the operational lifecycle
- Scalable design intended for deployment in a variety of environments, including industrial sites, micro‑grids, and remote locations
- Built with modular components to facilitate rapid installation, maintenance, and integration with existing power infrastructure