Making Every Particle Count: Maximizing Isotope Production for Medicine, National Security, and Beyond
Scientists have analyzed secondary neutrons at BLIP to enhance production efficiency for critical isotopes.
Scientists have analyzed secondary neutrons at BLIP to enhance production efficiency for critical isotopes.
Fluorescent nanosensors enable rapid, one-step detection of dangerous PFAS (per/polyfluoroalkyl) molecules in environmental samples.
Scientists demonstrated that ultra-thin membranes made of 2D materials can act as filters to separate isotopes of hydrogen.
Study shows liquid waste from pretreating biomass can be transformed into chemicals used to make plastics and other products
A user-friendly system allows scientists to drastically improve enzyme performance
The Diag2Diag AI model produces synthetic super-resolution data to build a deeper understanding of fusion devices.
Scientists invented new photodetectors that not only detect but also learn and think based on objects’ optical spectra.
Collisions of lead with smaller nuclei allow taking images of the fluctuating nuclear shape
Microscopes, x-rays, and spectroscopy tools join forces to identify defects that interfere with delicate superconducting qubit properties.
Collisions of oxygen and neon nuclei show how nuclear shapes can influence collective particle flow in small systems.
Scientists used powerful X-rays and computer models to uncover what causes surface defects in laser welds—and how to stop them.
Innovative, high-resolution X-ray microscopy system generates 3D images 20 times faster than the previous system.