ALICE measurements suggest that gluons inside nuclei begin behaving collectively at very small scales, favoring…
Browsing: Nuclear Physics
Antineutrinos from residual radioactive decay can reveal activity inside nuclear reactors even after they have…
Long after a nuclear reactor goes dark, its radioactive fuel continues to whisper through matter,…
Simulations reveal some of the strongest accelerations ever produced on Earth, opening new avenues for…
All four major LHC experiments have found new evidence that collisions between oxygen and neon…
Results from an experiment at the Facility for Rare Isotope Beams answer a fundamental question…
By recreating a nuclear fireball, scientists uncovered unexpected chemistry that could change how radioactive fallout…
Scientists have demonstrated a new plasma operating regime that could help solve two of fusion…
New experiments reveal possible η′-mesic nuclei, offering evidence that particle masses shift inside nuclear matter…
A new experiment using rare-isotope beams has provided new insight into the origin of proton-rich…
Scientists studying particle collisions at CERN have captured new evidence of how quarks move through…
Researchers identify an “Island of Inversion” in proton-neutron symmetric nuclei for the first time. For…
High-precision measurements from the KATRIN experiment strongly limit the existence of light sterile neutrinos and…
Researchers from TUM, working at CERN, have made a groundbreaking discovery that reveals how deuterons…
UT researchers have made rare measurements of exotic nuclear decay that reshape how scientists think…
A new theory-based approach provides access to the minute transverse motion of quarks within protons.…
MIT physicists have unveiled a groundbreaking way to explore the hidden interior of atoms, without…
After more than 30 years, physicists in Finland have uncovered the heaviest nucleus ever seen…