In high-intensity laser–matter interactions, including laser-induced particle acceleration, physicists generally want to work ...
The particle in question, known as a sterile neutrino, was supposed to only interact with gravity and have zero interactions ...
When observing small worms under a microscope, one might observe something very surprising: the worms appear to make a ...
In the future, quantum computers are anticipated to solve problems once thought unsolvable, from predicting the course of ...
New research puts forward compelling new evidence that dark matter interacts with cosmic "ghost particles" called neutrinos.
Physicists are exploring whether hidden dimensions and the shape of space could help explain why fundamental particles have ...
Nearly everything in the universe is made of mysterious dark matter and dark energy, yet we can’t see either of them directly ...
Shock wave dynamics and particle interaction constitute a rapidly evolving field that bridges high-speed fluid dynamics with particulate matter behaviour in a variety of industrial and natural ...
Laser-assisted particle interactions and scattering represent a rapidly emerging field in high-energy and quantum physics, where the interplay between intense electromagnetic fields and particle ...
"WIMPs are still the leading candidate for dark matter, but billions of dollars of experiments have been done, only getting ...
The theorized unseen structure of spacetime could also explain of the outstanding questions about the accelerating expansion ...