Inside the Large Hadron Collider (LHC), collisions between relatively light oxygen and neon nuclei may be producing matter ...
Scientists at the Institute of High Energy Physics (IHEP) in China used data from the Beijing Spectrometer III (BESIII) ...
Researchers at the University of Basel and the Technical University of Munich have developed a new method to reveal the ...
All four main LHC experiments have found new signs that oxygen and neon collisions may create the extreme state of matter that existed during the first microseconds after the Big Bang. One year after ...
Add Yahoo as a preferred source to see more of our stories on Google. Schematically illustration of the resonant annihilation of dark matter into Standard Model particles through a dark photon ...
After 50 years of searching, there is the strongest evidence yet for a glueball – a particle made of pure binding energy of the strong nuclear force.
An illustration of the experimental concept shows how researchers study phases in quantum material. In the background, the uniform blue stripes are the dominant order, and the subtle red stripe ...
Physicists have found a new way to peer inside one of matter’s most elusive quantum states: the Wigner crystal, where electrons stop behaving like independent particles and organize into a ...
The BESIII collaboration found strong evidence that X(2370) is a glueball, a long-predicted particle made of gluons, after 15 ...
Maintaining a long-distance relationship may be difficult for humans, but it's even more difficult for entangled states.
Neither matter nor force, paraparticles would be something else entirely. Fresh hints that they exist are raising hopes that they could explain reality at its deepest level ...
They are the first to observe a tunable Bose-Einstein Condensate made of excitons in an atomically thin semiconductor.