ATLAS Experiment Uncovers Higgs Boson Interactions with Heaviest Quarks
New direct evidence for Higgs interactions with top and bottom quarks confirms its role in generating mass for constituents of matter.
New direct evidence for Higgs interactions with top and bottom quarks confirms its role in generating mass for constituents of matter.
Comparing new prediction to measurements of muons’ precession could potentially help scientists discover new subatomic particles.
The element’s unusual electron structure and behavior are vital to understanding and exploiting the chemical bonding and reactivity of the heavy elements.
Crests of watery waves breaking in oil may be the gatekeepers to transport vital chemicals in industrial separation process.
Research offers new insights for maximizing sugar production in biofuel crops.
Researchers developed a new self-generating lubricant with great potential for industrial applications.
Charged particles emanating from Jupiter’s magnetosphere are powered up to create the northern and southern lights on Ganymede, Jupiter’s largest moon.
Enabling beams to respond to plasma conditions in real time allows scientists to avoid instabilities and raise performance.
New technique allows the spatiotemporal control of laser intensity, potentially changing the way laser-based accelerators are optimized.
Collaboration powers machine learning software that performs data analytics on petabyte-sized data sets in series of successful test runs.
Systems biology leads the way to exascale computing on Summit supercomputer.
The first-ever computation of an atomic nucleus, the deuteron, on a quantum chip demonstrates that even today’s rudimentary quantum computers can solve nuclear physics questions.