Getting a significant energy return from tokamak-based nuclear fusion reactors depends for a large part on plasma density, but increasing said density is tricky, as beyond a certain point the ...
The governments of the United States and the United Kingdom have joined hands with Tokamak Energy to advance the nuclear fusion science and technology needed for a future pilot plant. The new ...
China’s Experimental Advanced Superconducting Tokamak, better known as the country’s “artificial sun,” has just done something fusion physicists long treated as impossible. By pushing plasma to ...
Experiments at China's Experimental Advanced Superconducting Tokamak have confirmed the existence of "a density-free region" of the tokamak, finding a method to break through the density limit and ...
Fusion firm Tokamak Energy has released the first high-speed color images of plasma from inside a fusion energy machine, providing new visual insights into the behavior of the "captured star." This is ...
Harnessing energy from plasma requires a precise understanding of its behavior during fusion to keep it hot, dense and stable. A new theoretical model about a plasma’s edge, which can become unstable ...
Startorus Fusion, a Chinese startup that leverages artificial intelligence (AI) to enhance fusion performance, ...
First tokamak plasma at the SMall Aspect Ratio Tokamak – SMART – recorded with a fast-framing camera in the visible spectral range. In a pioneering approach to achieve fusion energy, the SMART device ...
The Chinese achievement underscores the growing prominence of China in fusion research and provides a concrete blueprint for ...
Tokamak plasma systems hold great promise in realising practical nuclear fusion, yet their full potential is constrained by the risk of disruptions – sudden, often catastrophic, losses of plasma ...
At 4 a.m., while most of New Jersey slept, a Princeton Plasma Physics Laboratory (PPPL) physicist sat at his computer connected to a control room 3,500 miles away in Oxford, England. Years of ...