Physicists are quietly testing an audacious idea: that the mass of everything around us might not come from an invisible ...
CERN’s Large Hadron Collider (LHC) is designed to probe the fringes of known physics, and now the facility has found particles not behaving as predicted. While it’s still early days, the discovery ...
Physicists have spent decades treating mass as something the universe simply hands to particles, a property encoded in ...
The theorized unseen structure of spacetime could also explain of the outstanding questions about the accelerating expansion ...
After a decade-long analysis, a collaboration of physicists has made the most precise measurement of the mass of a key particle – and it may unravel physics as we know it. The new measurement differs ...
An analysis of several experiments aimed at detecting the mysterious neutrino has identified a hint of a crack in the ...
Particle physics has always proceeded in two ways, of which new particles is one. The other is by making very precise measurements that test the predictions of theories and look for deviations from ...
Learn about the Standard Model of particle physics and how physicists use it to predict the (subatomic) future. In ancient times, Greeks interested in forecasting the future would voyage on the ...
The Standard Model is one of the most well-tested theories in particle physics. But scientists are searching for new physics beyond it. Humans have always sought to understand the essence of the world ...
It’s often said in science that extraordinary claims require extraordinary evidence. Recent measurements of the mass of the elementary particle known as the W boson provide a useful case study as to ...
Researchers have used Europe's most powerful high-performance computing (HPC) infrastructure to run new and more precise lattice quantum chromodynamics (lattice QCD) calculations of muons in a ...
New results from the MicroBooNE experiment rule out the existence of a sterile neutrino, reshaping how scientists think about ...