Filter News
Area of Research
- Advanced Manufacturing (1)
- Biological Systems (1)
- Clean Energy (4)
- Computational Engineering (1)
- Computer Science (4)
- Fusion and Fission (1)
- Fusion Energy (7)
- Isotope Development and Production (1)
- Materials (7)
- National Security (2)
- Neutron Science (3)
- Nuclear Science and Technology (12)
- Supercomputing (10)
News Topics
- (-) Advanced Reactors (10)
- (-) Artificial Intelligence (35)
- (-) Biomedical (10)
- (-) Climate Change (18)
- (-) Frontier (8)
- (-) Fusion (11)
- (-) Nuclear Energy (26)
- 3-D Printing/Advanced Manufacturing (27)
- Big Data (15)
- Bioenergy (21)
- Biology (12)
- Biotechnology (6)
- Buildings (12)
- Chemical Sciences (11)
- Clean Water (8)
- Composites (7)
- Computer Science (57)
- Critical Materials (4)
- Cybersecurity (7)
- Decarbonization (19)
- Education (1)
- Emergency (1)
- Energy Storage (17)
- Environment (41)
- Exascale Computing (8)
- Fossil Energy (2)
- Grid (10)
- High-Performance Computing (13)
- Isotopes (10)
- ITER (1)
- Machine Learning (13)
- Materials (13)
- Materials Science (36)
- Mathematics (2)
- Mercury (2)
- Microscopy (8)
- Molten Salt (1)
- Nanotechnology (8)
- National Security (13)
- Net Zero (5)
- Neutron Science (29)
- Partnerships (9)
- Physics (10)
- Polymers (7)
- Quantum Computing (8)
- Quantum Science (20)
- Security (4)
- Simulation (10)
- Space Exploration (9)
- Statistics (2)
- Summit (13)
- Sustainable Energy (23)
- Transportation (24)
Media Contacts
Oak Ridge National Laboratory is using ultrasonic additive manufacturing to embed highly accurate fiber optic sensors in heat- and radiation-resistant materials, allowing for real-time monitoring that could lead to greater insights and safer reactors.
OAK RIDGE, Tenn., March 4, 2019—A team of researchers from the Department of Energy’s Oak Ridge National Laboratory Health Data Sciences Institute have harnessed the power of artificial intelligence to better match cancer patients with clinical trials.
Scientists have tested a novel heat-shielding graphite foam, originally created at Oak Ridge National Laboratory, at Germany’s Wendelstein 7-X stellarator with promising results for use in plasma-facing components of fusion reactors.
Oak Ridge National Laboratory geospatial scientists who study the movement of people are using advanced machine learning methods to better predict home-to-work commuting patterns.
While studying the genes in poplar trees that control callus formation, scientists at Oak Ridge National Laboratory have uncovered genetic networks at the root of tumor formation in several human cancers.
By automating the production of neptunium oxide-aluminum pellets, Oak Ridge National Laboratory scientists have eliminated a key bottleneck when producing plutonium-238 used by NASA to fuel deep space exploration.
Geospatial scientists at Oak Ridge National Laboratory have developed a novel method to quickly gather building structure datasets that support emergency response teams assessing properties damaged by Hurricanes Harvey and Irma. By coupling deep learning with high-performance comp...
The same fusion reactions that power the sun also occur inside a tokamak, a device that uses magnetic fields to confine and control plasmas of 100-plus million degrees. Under extreme temperatures and pressure, hydrogen atoms can fuse together, creating new helium atoms and simulta...
With the production of 50 grams of plutonium-238, researchers at the Department of Energy’s Oak Ridge National Laboratory have restored a U.S. capability dormant for nearly 30 years and set the course to provide power for NASA and other missions.
When it’s up and running, the ITER fusion reactor will be very big and very hot, with more than 800 cubic meters of hydrogen plasma reaching 170 million degrees centigrade. The systems that fuel and control it, on the other hand, will be small and very cold. Pellets of frozen gas will be shot int...