Filter News
Area of Research
- Advanced Manufacturing (1)
- Biology and Environment (20)
- Computational Biology (2)
- Computational Engineering (1)
- Computer Science (2)
- Electricity and Smart Grid (1)
- Energy Science (9)
- Functional Materials for Energy (1)
- Fusion and Fission (3)
- Isotope Development and Production (1)
- Isotopes (4)
- Materials (6)
- Materials for Computing (1)
- National Security (4)
- Neutron Science (5)
- Nuclear Science and Technology (5)
- Supercomputing (46)
News Topics
- (-) High-Performance Computing (126)
- (-) Space Exploration (26)
- 3-D Printing/Advanced Manufacturing (141)
- Advanced Reactors (40)
- Artificial Intelligence (123)
- Big Data (77)
- Bioenergy (104)
- Biology (119)
- Biomedical (71)
- Biotechnology (31)
- Buildings (73)
- Chemical Sciences (84)
- Clean Water (32)
- Composites (33)
- Computer Science (221)
- Coronavirus (48)
- Critical Materials (29)
- Cybersecurity (35)
- Education (5)
- Element Discovery (1)
- Emergency (4)
- Energy Storage (114)
- Environment (217)
- Exascale Computing (62)
- Fossil Energy (8)
- Frontier (61)
- Fusion (65)
- Grid (73)
- Hydropower (12)
- Irradiation (3)
- Isotopes (62)
- ITER (9)
- Machine Learning (66)
- Materials (156)
- Materials Science (154)
- Mathematics (12)
- Mercury (12)
- Microelectronics (4)
- Microscopy (55)
- Molten Salt (10)
- Nanotechnology (62)
- National Security (85)
- Neutron Science (169)
- Nuclear Energy (121)
- Partnerships (64)
- Physics (68)
- Polymers (34)
- Quantum Computing (49)
- Quantum Science (85)
- Security (30)
- Simulation (63)
- Software (1)
- Statistics (4)
- Summit (70)
- Transportation (102)
Media Contacts
Connect with ORNL
Get ORNL News

ORNL has added 10 virtual tours to its campus map, each with multiple views to show floor plans, rotating dollhouse views and 360-degree navigation. As a user travels through a map, pop-out informational windows deliver facts, videos, graphics and links to other related content.

Radioactive isotopes power some of NASA’s best-known spacecraft. But predicting how radiation emitted from these isotopes might affect nearby materials is tricky

After its long journey to Mars beginning this summer, NASA’s Perseverance rover will be powered across the planet’s surface in part by plutonium produced at the Department of Energy’s 91°µÍř.

If humankind reaches Mars this century, an 91°µÍř-developed experiment testing advanced materials for spacecraft may play a key role.

The type of vehicle that will carry people to the Red Planet is shaping up to be “like a two-story house you’re trying to land on another planet.

Using the Titan supercomputer at 91°µÍř, 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.

By automating the production of neptunium oxide-aluminum pellets, 91°µÍř scientists have eliminated a key bottleneck when producing plutonium-238 used by NASA to fuel deep space exploration.

A shield assembly that protects an instrument measuring ion and electron fluxes for a NASA mission to touch the Sun was tested in extreme experimental environments at 91°µÍř—and passed with flying colors. Components aboard Parker Solar Probe, which will endure th...

Last November a team of students and educators from Robertsville Middle School in Oak Ridge and scientists from 91°µÍř submitted a proposal to NASA for their Cube Satellite Launch Initiative in hopes of sending a student-designed nanosatellite named RamSat into...

With the production of 50 grams of plutonium-238, researchers at the Department of Energy’s 91°µÍř have restored a U.S. capability dormant for nearly 30 years and set the course to provide power for NASA and other missions.