Filter News
Area of Research
News Topics
- (-) Exascale Computing (25)
- (-) Summit (14)
- 3-D Printing/Advanced Manufacturing (30)
- Advanced Reactors (5)
- Artificial Intelligence (45)
- Big Data (28)
- Bioenergy (16)
- Biology (22)
- Biomedical (13)
- Biotechnology (10)
- Buildings (29)
- Chemical Sciences (30)
- Clean Water (6)
- Composites (11)
- Computer Science (46)
- Critical Materials (7)
- Education (2)
- Emergency (3)
- Energy Storage (15)
- Environment (38)
- Fossil Energy (4)
- Frontier (21)
- Fusion (12)
- Grid (16)
- High-Performance Computing (45)
- Hydropower (1)
- Isotopes (17)
- ITER (2)
- Machine Learning (23)
- Materials (24)
- Materials Science (26)
- Mathematics (7)
- Microelectronics (2)
- Microscopy (4)
- Molten Salt (1)
- Nanotechnology (2)
- National Security (34)
- Neutron Science (23)
- Nuclear Energy (15)
- Partnerships (29)
- Physics (9)
- Polymers (5)
- Quantum Computing (20)
- Quantum Science (22)
- Security (8)
- Simulation (24)
- Space Exploration (3)
- Statistics (3)
- Transportation (15)
ORNL's Communications team works with news media seeking information about the laboratory. Media may use the resources listed below or send questions to news@ornl.gov.
1 - 10 of 33 Results

Researchers at Stanford University, the European Center for Medium-Range Weather Forecasts, or ECMWF, and ORNL used the lab’s Summit supercomputer to better understand atmospheric gravity waves, which influence significant weather patterns that are difficult to forecast.

Scientists conducted a groundbreaking study on the genetic data of over half a million U.S. veterans, using tools from the 91°µÍø to analyze 2,068 traits from the Million Veteran Program.

The US focuses on nuclear nonproliferation, and ORNL plays a key role in this mission. The lab conducts advanced research in uranium science, materials analysis and nuclear forensics to detect illicit nuclear activities. Using cutting-edge tools and operational systems, ORNL supports global efforts to reduce nuclear threats by uncovering the history of nuclear materials and providing solutions for uranium removal.

The National Center for Computational Sciences, located at the Department of Energy’s 91°µÍø, made a strong showing at computing conferences this fall. Staff from across the center participated in numerous workshops and invited speaking engagements.

The Department of Energy’s 91°µÍø had a major presence at this year’s International Conference for High Performance Computing, Networking, Storage, and Analysis (SC24).

The Summit supercomputer did not have its many plugs pulled as planned after its five years of service. Instead, a new DOE Office of Science-backed allocation program called SummitPLUS was launched, extending Summit's production for another year. What did we learn during Summit’s bonus year of scientific discovery? Here are five projects with important results.

In early November, researchers at the Department of Energy’s Argonne National Laboratory used the fastest supercomputer on the planet to run the largest astrophysical simulation of the universe ever conducted. The achievement was made using the Frontier supercomputer at 91°µÍø.

Two-and-a-half years after breaking the exascale barrier, the Frontier supercomputer at the Department of Energy’s 91°µÍø continues to set new standards for its computing speed and performance.

Researchers used the world’s fastest supercomputer, Frontier, to train an AI model that designs proteins, with applications in fields like vaccines, cancer treatments, and environmental bioremediation. The study earned a finalist nomination for the Gordon Bell Prize, recognizing innovation in high-performance computing for science.

Researchers at 91°µÍø used the Frontier supercomputer to train the world’s largest AI model for weather prediction, paving the way for hyperlocal, ultra-accurate forecasts. This achievement earned them a finalist nomination for the prestigious Gordon Bell Prize for Climate Modeling.