
Researchers Overcome the Space between Protons and Neutrons to Study the Heart of Matter
Scientists conduct the first direct probes of the interactions between protons and neutrons inside nuclei.
Scientists conduct the first direct probes of the interactions between protons and neutrons inside nuclei.
Scientists predict that gluons, the particles that bind quarks, also bind to one another, but they have never unambiguously observed globs of pure ‘glue.’
Researchers have created a novel membrane platform for studying the structure and function of membrane proteins in their realistic environment.
Understanding Ions’ Subtle Molecular-Level Interactions Allows Scientists to Tune the Melting Point
Neutron and X-ray scattering shed light on exotic states that determine the electronic properties of materials.
New electronic ring-containing polymers enable unexpected movement of energy along the backbone connecting the polymer and within each ring.
Metal organic framework materials turn fluorescent light signals on or off in the presence of guest molecules.
Computational design of bundled peptide building blocks that can be precisely linked provides new ways to create customized polymers.
A new quantitative understanding of how, at what distance, and in what shape zinc oxide nanoparticles come together while separated by liquid.
Scientists track down coexistence of multiple shapes in the Nickel-64 nucleus: a spherical ground state and elongated and flattened shapes.
New measurements provide insights for geochronology and reactor design.
Researchers address the challenge of integrating the hot core and the cooler edge of a fusion plasma.