Inside high-energy proton collisions, quarks and gluons briefly form a dense, boiling state before cooling into ordinary particles. Researchers expected this transition to change how disordered the ...
Scientists aim to build the first graviton detector to explore gravity's quantum nature, despite significant challenges.
Proton collisions at the LHC appear wildly chaotic, but new data reveal a surprising underlying order. The findings confirm that a basic rule of quantum mechanics holds true even in extreme particle ...
Eastern North Carolina's biomanufacturing sector is experiencing unprecedented growth, with the region capturing the lion's ...
Muon g-2 Theory Initiative chair Aida El-Khadra discusses conflicting datasets, disparate calculations and hot competition ...
Inside the most powerful particle colliders on Earth, protons slam together at nearly the speed of light, shredding matter ...
In a new study published in Astronomy & Astrophysics, astronomers have made an extraordinary breakthrough by observing the ...
Scientists at Fermilab’s MicroBooNE experiment have ruled out the existence of the elusive sterile neutrino, a particle ...
When analyzing early universe data, the Standard Model of Cosmology suggests that the universe should be more “clumpy” that ...
"WIMPs are still the leading candidate for dark matter, but billions of dollars of experiments have been done, only getting ...
New research puts forward compelling new evidence that dark matter interacts with cosmic "ghost particles" called neutrinos.