3 Questions: Searching for new physics with “beauty” particles
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,...
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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 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...
Author(s): Samuel JarmanA new AI-powered event-processing algorithm is being readied to cope with the torrent of data that will stream from the Large Hadron Collider upgrade.[Physi...
A pocket-sized particle detector is making cosmic ray physics accessible from classrooms to major experiments. Particles from deep space are passing through the world around you ri...
Earth itself may be one of the world’s largest detectors for ultralight dark matter. Earth may already contain one of the largest dark matter experiments ever built. Instead of rel...
An accelerator of the highest-energy protons in our galaxy has been identified; it could help scientists better understand the nature of these fast-moving particles that fill the s...
Astronomers have conclusively identified a source of the highest energy cosmic ray protons in the Milky Way, solving a long standing puzzle near the star Altair. By combining gamma...
Author(s): Susan CurtisA tabletop method for producing cold radioactive molecules enables precise measurement of their properties and could uncover violations of fundamental symmet...
Cosmic rays are made primarily of protons with a few electrons sprinkled in, and they can reach energies even higher than what human-made accelerators can produce. Considering huma...
Scientists have identified an accelerator that produces the highest-energy protons in our galaxy, a finding that could clarify the nature of the fast-moving particles filling the s...
According to one researcher, this observation "promises new insights into the evolution of the early universe."
This podcast also explores the intersection of general relativity and quantum information The post Quarks and qubits: how quantum computing could transform particle physics appeare...
Cross calibration combines data from 25 satellites The post GPS particle detectors track space radiation over two decades appeared first on Physics World.
CERN’s ALPHA collaboration pins down the ground-state hyperfine splitting of antihydrogen within four parts per million The post Matter-antimatter symmetry measurement sets new pre...
A research team from the Institute of Physics in Hanoi is collaborating with more than 1,000 scientists worldwide to investigate some of the biggest mysteries in physics, including...
A new project is bringing together experts in quantum information science and high energy physics to build diamond-based quantum sensors capable of measuring electromagnetic fields...
The cosmic accelerator can push protons beyond one quadrillion electric volts.
The famous particle accelerator has gone silent, but its next chapter could usher in a new era of particle physics.
A team of NASA-sponsored scientists and engineers has developed a novel approach to observing high-energy particles in the near-Earth space environment, incorporating miniaturized...
Counterintuitive finding could help us better understand how highly energetic galactic activities impact the formation of cosmological structures The post Fast radio bursts reveal...
Modern astronomy relies not only on bigger telescopes and more sophisticated instruments, but upon computational power. Source
Keith Cooper reviews It’s (Just) Rocket Science: Exploring Physics Through Spaceflight Missions by Trisha Muro The post Bringing physics down to Earth through rocket science appear...
China's LHAASO identifies Cygnus X-3 as the most powerful particle accelerator yet discovered in the universe
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