Physicists find major clue to matter’s biggest mystery
Researchers have nailed down an elusive quantity called baryon number, which may be responsible for the cosmic mismatch between matter and antimatter
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Researchers have nailed down an elusive quantity called baryon number, which may be responsible for the cosmic mismatch between matter and antimatter
Stars and galaxies make up much of the universe’s ordinary, observable matter. But for decades, scientists have wrestled with a cosmic conflict: There should be much more. Physici...
Stars and galaxies make up much of the universe's ordinary, observable matter. But for decades, scientists have wrestled with a cosmic conflict: There should be much more.
The Big Bang theory tells the story of the universe’s first few minutes with astonishing success. Yet it stumbles over one of the simplest elements in nature.
Brief but powerful flashes of radio waves are aiding astronomers' quest to find and map cosmic gas. The post A New Way to Map the Universe's Missing Matter appeared first on Sky &a...
When neutron stars merge, they create a powerful explosion called a kilonova that flings out neutron-rich material, some of which decays into heavy elements through a process calle...
Author(s): Slavomira StefkovaDoes a new measurement of a rare decay of the neutral B meson portend new physics?[Physics 19, 94] Published Wed Jul 08, 2026
Counterintuitive finding could help us better understand how highly energetic galactic activities impact the formation of cosmological structures The post Fast radio bursts reveal...
MIT researchers have discovered space matter that has been ‘missing’ since the 1990s using Fast Radio Bursts, individual flashes of radio waves traveling through space and coming f...
The Standard Model of particle physics is a well established theory that describes the fundamental particles and forces that govern the universe. Yet it cannot explain dark matter,...
Physicists may have uncovered a hidden feature inside protons that helps preserve one of matter’s most fundamental properties. RHIC collision data suggest baryon number is carried...
Astronomers aren't certain where Fast Radio Bursts come from. But they still have utility. They can use them to find the Universe's "missing matter."
Possible interactions between dark matter and neutrinos may help explain a persistent mismatch in how cosmic structure evolved. Everything visible, stars, planets, gas, and galaxie...
Have you been keeping up to date with physics news? Try our short quiz to find out The post Quiz of the week: where does new research say the universe’s ‘missing’ baryonic matter i...
Since the 1990s, researchers have wondered if unexpected results from gallium-based neutrino detectors are a sign of a new kind of particle, but a new study suggests that revising...
Results from an experiment at the Facility for Rare Isotope Beams answer a fundamental question about the structure of atomic nuclei and help explain how different elements formed...
Author(s): Rachel BerkowitzBack-to-back jets produced during heavy-ion collisions reveal a plasma property predicted by quantum chromodynamics.[Physics 19, s100] Published Thu Aug...
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
It’s hard hunting down the oldest stars in the universe. These behemoths, known as Population (or Pop) III stars, are a missing link in cosmology between the primordial soup that w...
Positrons—the antimatter counterpart of electrons—are created in high-energy cosmic processes. When normal matter meets its antimatter counterpart, they annihilate, or vanish, and...
Physicists across the globe are on a quest for a particle that makes up nearly 85 percent of all matter in the universe, yet no one has ever directly detected it. Jessica Fry, a fi...
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