AIP Publishing today announced that Igor Kaganovich of the U.S. Department of Energy's Princeton Plasma Physics Laboratory ...
The U.S. Department of Energy 's (DOE) Princeton Plasma Physics Laboratory (PPPL) celebrated a significant milestone in the ...
Increasing the surface area when plasma and water interact could help scale up a technology that destroys contaminants such ...
Quantum field theories are powerful tools for particle physics and condensed matter physics but are rarely used in plasma physics. However, in warm-dense regimes, where matter is partially ionized and ...
Two grants from the Department of Energy were recently awarded to professors in the Department of Physics, one to research professor Alla Safronova and another to professor Bruno Bauer. Both ...
Electron beam generated plasmas constitute a refined method for producing ionised gases, achieved by directing a high-energy electron beam into a neutral gas. The non-equilibrium ionisation caused by ...
The Princeton Plasma Physics Laboratory (PPPL), roughly 4 miles out from campus, is a national lab run by the Department of Energy and yet remains a relatively elusive branch of Princeton’s research ...
Using CERN’s Super Proton Synchrotron, researchers generated plasma fireballs to simulate blazar jets. The beams stayed ...
The development of current drive techniques in plasma physics has advanced significantly over recent years, offering promising routes for non-inductive current generation in both experimental and ...
Physicists used a machine-learning method to identify surprising new twists on the non-reciprocal forces governing a many-body system. The journal PNAS published the findings by experimental and ...
Why has plasma processing captured the imagination of bioscientists so strongly and what triggered its rapid rise in popularity? James Tyrrell catches up with Uroš Cvelbar of the Jožef Stefan ...
When two grapes touch inside a microwave, energy becomes trapped in the tiny gap between them. Instead of heating evenly, the ...