The generation of fusion energy utilizes the fusion reaction that occurs inside a high-temperature plasma. In order to achieve the generation of fusion energy, we confine plasma in the magnetic field ...
In fusion power generation, it is essential that the high-energy particles generated by a fusion reaction in hot plasma heat it to sustain further fusion reactions. The key to this self-heating of the ...
When a gas is highly energized, its electrons get torn from the parent atoms, resulting in a plasma—the oft-forgotten fourth ...
The most powerful geomagnetic storm of the current solar cycle has just torn into the invisible bubble of charged particles ...
The exhaust heat generated by a fusing plasma in a commercial-scale reactor may not be as damaging to the vessel's innards as once thought, according to new research about escaping plasma particles.
Chinese scientists have unveiled a superconducting linear plasma device designed to test materials for nuclear fusion reactors. The Superconducting Plasma Wall Interaction Linear Device (SWORD) boasts ...
Scientists want to use it to learn more about the sun and nuclear fusion. When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. Capturing lightning in ...
The study of energetic particles and Alfvén eigenmodes is central to understanding plasma behaviour in both laboratory fusion devices and natural astrophysical settings. These high-energy particles, ...
The findings could help researchers predict dangerous space weather. When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. Scientists may have ...
Physicists have found evidence of X particles in the quark-gluon plasma produced in the Large Hadron Collider (LHC) at CERN, the European Organization for Nuclear Research, based near Geneva, ...
More than 100 scientists from around the world met in Shizuoka, Japan, last week to discuss the physics of energetic particles and instabilities in fusion plasmas – the state of matter in which nuclei ...