Tiny charged electrons and protons which can damage satellites and alter the ozone have revealed…
Browsing: Particle Physics
Particle physics is the branch of physics that studies the fundamental building blocks of matter and the forces that govern their interactions. It seeks to understand the universe at its most basic level, probing particles like quarks, leptons, and bosons—most famously including the Higgs boson, discovered at CERN’s Large Hadron Collider. These particles are described by the Standard Model, a powerful but incomplete framework that researchers continually test and refine. Ongoing experiments aim to explore unanswered questions such as the nature of dark matter, the imbalance between matter and antimatter, and the unification of fundamental forces. Particle physics sits at the frontier of human knowledge, helping to reveal the underlying structure of reality itself.
Researchers from University of Copenhagen have developed a new technique that keeps quantum bits of…
Inside each proton or neutron there are three quarks bound by gluons. Until now, it…
City College researchers used Rydberg states in 2D semiconductors to demonstrate single-photon switching on a…
Experiments at UCLA’s Basic Plasma Science Facility confirm interaction of electrons and Alfvén waves. The…
Physicists using the LHCb experiment at CERN have confirmed that charm mesons—a type of subatomic…
LLNL’s BeEST experiment sets new limits on sterile neutrinos, advancing dark matter detection with superconducting…
What Are Sterile Neutrinos? Sterile neutrinos are a special kind of neutrino that has been…
New models suggest gravity may be key to understanding how particles form at the smallest…
Fermilab’s Argonaut project is building a pioneering robot to function in ultracold liquid argon, with…
CERN has laser-cooled antihydrogen atoms, enabling high-precision measurements that may explain why matter dominates the…
The ICARUS detector, part of Fermilab’s Short-Baseline Neutrino Program, will officially start its hunt for…
UC Riverside dark matter research program targets assumptions about particle physics. As its name suggests,…
When heavy ions, accelerated to the speed of light, collide with each other in the…
CDEX researchers use effective field theory to improve dark matter detection limits and opens new…
DAMPE revealed a spectral softening in helium at 34 TeV, implying nearby cosmic-ray sources with…
Quark-gluon plasma and tap water share a key flow property, suggesting deep physical parallels rooted…
Electric jolts, once thought too chaotic, may actually trigger precise quantum entanglement between atoms. How…