Unpacking Particle Showers with Machine Learning
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...
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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...
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...
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...
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...
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...
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,...
When two atomic nuclei collide at nearly the speed of light, they create one of the hottest and most energetic forms of matter known to science: quark–gluon plasma. In this extreme...
The famous particle accelerator has gone silent, but its next chapter could usher in a new era of particle physics.
Simulations reveal some of the strongest accelerations ever produced on Earth, opening new avenues for QCD research. When atomic nuclei smash together at almost the speed of light,...
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...
Insider Brief PRESS RELEASE — By remotely accessing an IBM quantum computer through the Quantum Computer User Program (QCUP) — a quantum computing access program managed by the Oak...
Insider Brief Press release – John Lajoie is a builder—not of buildings or everyday machines, but of detectors with a special purpose. A physicist at the Department of Energy’s (DO...
An experiment by researchers at the University of California San Diego and TU Wien has revealed a new quantum regime that generates coherent X-rays at higher energies than conventi...
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...
ALICE measurements suggest that gluons inside nuclei begin behaving collectively at very small scales, favoring gluon saturation over conventional nuclear shadowing alone. Deep ins...
The cosmic accelerator can push protons beyond one quadrillion electric volts.
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...
A research collaboration led by the Lawrence Berkeley National Laboratory (LBNL) has successfully simulated hadronization—the fundamental particle physics process where quarks bind...
ATLAS probes top-antitop quark interactions near threshold The post Observation of top-antitop quark excess appeared first on Physics World.
Author(s): Xin Qiao and Xiao-Bo ZhangA ring of optical fiber can be made to host phenomena that originated in the realm of high-energy physics.[Physics 19, 89] Published Mon Jul 27...
Europe's CERN physics research center bids 'Farewell' to the Large Hadron Collider, but it's actually more like 'See You Later, Accelerator!' The new, improved High-Luminosity LHC...
A new method allows physicists to study fractional quantum Hall systems and anyon behaviour at unprecedented scale and accuracy The post Advanced simulations of exotic quantum matt...
All four major LHC experiments have found new evidence that collisions between oxygen and neon may produce the extreme state of matter that existed during the first microseconds af...
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