Researchers the world over have long believed that 70 percent of the universe is composed…
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.
Shooting beams of ions at proton clouds may help researchers map the inner workings of…
A Caltech team has developed a new tabletop tool using radioactive radium molecules to detect…
Scientists at UZH and CERN have just released new intriguing results. According to the international…
The Cygnus Cocoon may house the Milky Way’s most extreme particle accelerator, driven by stellar…
Particle physicist Lindley Winslow seeks the universe’s smallest particles for answers to its biggest questions.…
Imperial physicists are part of a team that has announced ‘intriguing’ results that potentially cannot…
Supercomputer simulations bring physicists closer to unlocking quark behavior inside matter. Since the 1930s, scientists…
Researchers have discovered the Odderon particle, predicted in 1973, through detailed analysis of data from…
Scientists of the PRISMA+ Cluster of Excellence analyze data from the gravitational wave observatory NANOGrav.…
Berkeley Lab Physicists Play Key Role in Studies That Solve a Cosmological Mystery Researchers have…
From a black hole to the South Pole: Scientists identify first neutrino from a tidal…
A new method called self-guided tomography lets scientists find 20-dimensional quantum states—quvigints—quickly and accurately, even…
A 2016 antineutrino detection by IceCube confirmed the Glashow resonance, offering the first glimpse of…
The South Pole neutrino detector saw a Glashow resonance event, a phenomenon predicted by Nobel…
University of Chicago researchers hunt for proposed particles that could explain quirks of the universe.…
Researchers created a technique to measure particle accelerator beams with unprecedented resolution, revealing key insights…
Photon-Photon Polaritons: Intriguing Particles That Emerge When Two Photons Couple Researchers exploring the interactions between…