The US Department of Energy (DOE) and Kyoto Fusioneering (KF) today announced a landmark ...
All of these new developments don’t mean that the sun is ready to give up its fusion monopoly, as many significant ...
Zap Energy’s three-meter reactor uses a lead-lithium liquid wall, cutting hardware needs and bringing cleaner, modular power ...
Scientists may have discovered a way to improve fusion reactors. Interesting Engineering reported on experiments inside a tokamak, a doughnut-shaped machine that contains plasma. Instead of only ...
Fusion power, long hailed as the holy grail of clean energy, has faced decades of scientific and engineering challenges. Recent breakthroughs, however, have brought this dream closer to reality than ...
The machines at their center, called tokamaks, have evolved from experimental curiosities into instruments capable of sustaining confined plasma – matter so hot it mimics the ...
Nuclear fusion promises a green and infinitely renewable supply of energy—if we can harness it. Fusion happens all the time inside the sun. But to recreate the process on Earth, we must control ...
Add Yahoo as a preferred source to see more of our stories on Google. The sun-mimicking technology known as nuclear fusion hopes to create “limitless” energy by smashing light nuclei together using ...
Nuclear fusion, which operates on the same principle that powers the sun, is expected to become a sustainable energy source for the future. To achieve fusion power generation, it is essential to ...
Liquid lithium has emerged as a promising material in the development of fusion reactor technologies owing to its unique physicochemical properties. Its low atomic number, excellent heat transfer ...
In the heart of Provence, Southern France, the world's largest fusion energy experiment, which could be a step towards unlimited energy, has quietly entered perhaps the most critical stage yet. The ...
Researchers at the University of British Columbia have shown that a small bench-top reactor can enhance nuclear fusion rates by electrochemically loading a metal with deuterium fuel. Unlike massive ...