How to Make Soot and Stardust
Scientists unlock mystery that could help reduce emissions of fine particles from combustion engines and other sources.
Scientists unlock mystery that could help reduce emissions of fine particles from combustion engines and other sources.
Precise positioning of oxygens could help engineer faster, more efficient energy-relevant chemical transformations.
Scientists improve our understanding of the relationship between fundamental forces by re-creating the earliest moments of the universe.
First direct measurement show how heavy particles containing a charm quark get caught up in the flow of early universe particle soup.
New detector enables electron microscope imaging at record-breaking resolution.
Scientists can now measure 3-D structures of tiny particles with properties that hold promise for advanced sensors and diagnostics.
New method can make films of atomically thin carbon that are over a foot long.
Scientists uncover a way to control terahertz radiation using tiny engineered particles in a magnetic field, potentially opening the doors for better medical and environmental sensors.
Laboratory automation applied to complex radiochemical isolation of astatine-211 from cyclotron-bombarded targets.
Particle flow patterns suggest even small-scale collisions create drops of early universe quark-gluon plasma.
Proton-irradiated thorium targets are successfully mined for therapeutic radium isotopes.
CMS observes Higgs boson decays into bottom quarks, furthering our knowledge of how the particles that make up matter behave.