No Ball Milling Needed: Alternative Oxide Dispersion-Strengthened Steel Manufacturing
Combining advanced powder synthesis with solid state processing allows researchers to streamline oxide dispersion-strengthened steel fabrication.
A New Look at One of the Most Abundant Particles in the Universe
Researchers at PNNL are applying deep learning techniques to learn more about neutrinos, part of a worldwide network of researchers trying to understand one of the universe’s most elusive particles.
PNNL Scientists Contribute to Expanded Hunt for WIMP Dark Matter
DOE gives go ahead for SuperCDMS — one of the world's most sensitive dark matter experiments.
Natural Radiation Can Interfere with Quantum Computers
Radiation from natural sources in the environment can limit the performance of superconducting quantum bits, known as qubits. The discovery has implications for quantum computing and for the search for dark matter.
PNNL Staff Members Receive Highest DOE Recognition
The annual Secretary’s Honor Awards recognize federal and contractor employees who have shown exceptional creativity, drive, and commitment to projects that have lasting impact on the Department of Energy's mission.
Revealing the Distribution of Helium Cavities in a Toughened Tungsten Composite
Different sized helium cavities that form after ion irradiation are unevenly distributed in a ductile-phase toughened tungsten composite.
Isotope Program
The Isotope Program at PNNL supports scientific advances in the production and use of radioisotopes for research, medicine, and industrial applications.
Space Science, Technology, and Policy
PNNL’s Space Science, Technology, and Policy activities draw on diverse technical expertise and research capabilities from across the Laboratory.
Hunting for Dark Matter Axions
The search for dark matter includes expertise in radio frequency signal detection, quantum sensing, and high-energy physics at PNNL.
How ‘Clean’ Does a Quantum Computing Test Facility Need to Be? PNNL Scientists Show the Way
How to keep stray radiation from “shorting” superconducting qubits; a pair of studies shows where ionizing radiation is lurking and how to banish it.