Filter News
Area of Research
- (-) Materials (26)
- (-) Supercomputing (12)
- Advanced Manufacturing (3)
- Biology and Environment (17)
- Clean Energy (18)
- Climate and Environmental Systems (1)
- Computational Engineering (2)
- Computer Science (5)
- Electricity and Smart Grid (1)
- Functional Materials for Energy (1)
- Fusion and Fission (9)
- Fusion Energy (6)
- Isotopes (7)
- Materials for Computing (3)
- Mathematics (1)
- National Security (6)
- Neutron Science (34)
- Nuclear Science and Technology (11)
- Quantum information Science (1)
News Type
News Topics
- (-) Artificial Intelligence (5)
- (-) Climate Change (5)
- (-) Cybersecurity (2)
- (-) Fusion (5)
- (-) Isotopes (4)
- (-) Molten Salt (2)
- (-) Neutron Science (8)
- (-) Physics (7)
- (-) Space Exploration (3)
- 3-D Printing/Advanced Manufacturing (13)
- Advanced Reactors (4)
- Big Data (5)
- Bioenergy (5)
- Biology (4)
- Biomedical (7)
- Buildings (2)
- Chemical Sciences (11)
- Clean Water (1)
- Composites (5)
- Computer Science (23)
- Coronavirus (4)
- Critical Materials (8)
- Decarbonization (2)
- Energy Storage (17)
- Environment (9)
- Exascale Computing (4)
- Frontier (4)
- Grid (1)
- High-Performance Computing (11)
- Irradiation (1)
- ITER (1)
- Machine Learning (3)
- Materials (38)
- Materials Science (32)
- Microscopy (14)
- Nanotechnology (18)
- National Security (1)
- Nuclear Energy (7)
- Partnerships (2)
- Polymers (9)
- Quantum Computing (5)
- Quantum Science (6)
- Security (1)
- Simulation (4)
- Software (1)
- Summit (7)
- Sustainable Energy (7)
- Transformational Challenge Reactor (1)
- Transportation (10)
Media Contacts
Scientists have tapped the immense power of the Summit supercomputer at Oak Ridge National Laboratory to comb through millions of medical journal articles to identify potential vaccines, drugs and effective measures that could suppress or stop the
The prospect of simulating a fusion plasma is a step closer to reality thanks to a new computational tool developed by scientists in fusion physics, computer science and mathematics at ORNL.
Researchers at the Department of Energy’s Oak Ridge National Laboratory have received five 2019 R&D 100 Awards, increasing the lab’s total to 221 since the award’s inception in 1963.
Using additive manufacturing, scientists experimenting with tungsten at Oak Ridge National Laboratory hope to unlock new potential of the high-performance heat-transferring material used to protect components from the plasma inside a fusion reactor. Fusion requires hydrogen isotopes to reach millions of degrees.
Using the Titan supercomputer at Oak Ridge National Laboratory, a team of astrophysicists created a set of galactic wind simulations of the highest resolution ever performed. The simulations will allow researchers to gather and interpret more accurate, detailed data that elucidates how galactic winds affect the formation and evolution of galaxies.
Researchers have pioneered a new technique using pressure to manipulate magnetism in thin film materials used to enhance performance in electronic devices.
Scientists have discovered a way to alter heat transport in thermoelectric materials, a finding that may ultimately improve energy efficiency as the materials
Researchers used neutron scattering at Oak Ridge National Laboratory’s Spallation Neutron Source to investigate the effectiveness of a novel crystallization method to capture carbon dioxide directly from the air.
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 scientists analyzed more than 50 years of data showing puzzlingly inconsistent trends about corrosion of structural alloys in molten salts and found one factor mattered most—salt purity.