Filter News
Area of Research
- Advanced Manufacturing (1)
- Biology and Environment (19)
- Clean Energy (45)
- Computer Science (1)
- Electricity and Smart Grid (1)
- Fusion and Fission (14)
- Fusion Energy (5)
- Isotopes (12)
- Materials (40)
- Materials for Computing (1)
- National Security (17)
- Neutron Science (54)
- Nuclear Science and Technology (23)
- Nuclear Systems Modeling, Simulation and Validation (1)
- Quantum information Science (2)
- Supercomputing (39)
News Topics
- (-) Composites (7)
- (-) Coronavirus (27)
- (-) Cybersecurity (13)
- (-) Frontier (20)
- (-) Grid (23)
- (-) Isotopes (19)
- (-) Microscopy (15)
- (-) Neutron Science (63)
- (-) Nuclear Energy (53)
- (-) Space Exploration (6)
- 3-D Printing/Advanced Manufacturing (48)
- Advanced Reactors (17)
- Artificial Intelligence (34)
- Big Data (21)
- Bioenergy (35)
- Biology (34)
- Biomedical (28)
- Biotechnology (8)
- Buildings (15)
- Chemical Sciences (29)
- Clean Water (7)
- Climate Change (41)
- Computer Science (62)
- Critical Materials (9)
- Decarbonization (31)
- Education (3)
- Emergency (1)
- Energy Storage (42)
- Environment (72)
- Exascale Computing (18)
- Fossil Energy (2)
- Fusion (23)
- High-Performance Computing (36)
- Hydropower (3)
- Irradiation (2)
- Machine Learning (23)
- Materials (61)
- Materials Science (54)
- Mathematics (4)
- Mercury (3)
- Microelectronics (2)
- Molten Salt (3)
- Nanotechnology (24)
- National Security (23)
- Net Zero (5)
- Partnerships (24)
- Physics (27)
- Polymers (11)
- Quantum Computing (12)
- Quantum Science (23)
- Renewable Energy (2)
- Security (6)
- Simulation (29)
- Software (1)
- Summit (26)
- Sustainable Energy (41)
- Transformational Challenge Reactor (5)
- Transportation (33)
Media Contacts
![Conceptual art depicts machine learning finding an ideal material for capacitive energy storage. Its carbon framework (black) has functional groups with oxygen (pink) and nitrogen (turquoise). Credit: Tao Wang/ORNL, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-11/Press%20release%20image_0.jpg?h=706c9a24&itok=zX1lC5ud)
Guided by machine learning, chemists at ORNL designed a record-setting carbonaceous supercapacitor material that stores four times more energy than the best commercial material.
![An illustration of the lattice examined by Phil Anderson in the early ‘70s. Shown as green ellipses, pairs of quantum particles fluctuated among multiple combinations to produce a spin liquid state.](/sites/default/files/styles/list_page_thumbnail/public/2023-11/KYS_PressReleaseImage_a_0.jpg?h=73a69e3b&itok=0dx8jVsZ)
A team of researchers associated with the Quantum Science Center headquartered at the Department of Energy's Oak Ridge National Laboratory has confirmed the presence of quantum spin liquid behavior in a new material with a triangular lattice, KYbSe2.
![From left are Analytics and AI Methods at Scale group leader Feiyi Wang, technical lead Mike Matheson and research scientist Hao Lu.](/sites/default/files/styles/list_page_thumbnail/public/2023-11/2023-P12429_0.jpg?h=55be468c&itok=tajHF4hU)
The team that built Frontier set out to break the exascale barrier, but the supercomputer’s record-breaking didn’t stop there.
![Staff working on construction and facility updates in preparation for the Frontier, the world’s first exascale supercomputer.](/sites/default/files/styles/list_page_thumbnail/public/2023-11/MicrosoftTeams-image_0.png?h=c6980913&itok=_zXnovna)
Making room for the world’s first exascale supercomputer took some supersized renovations.
![Researchers used Frontier, the world’s first exascale supercomputer, to simulate a magnesium system of nearly 75,000 atoms and the National Energy Research Computing Center’s Perlmutter supercomputer to simulate a quasicrystal structure, above, in a ytterbium-cadmium alloy. Credit: Vikram Gavini](/sites/default/files/styles/list_page_thumbnail/public/2023-11/Gavini_quasiCrystal_0.png?h=c85002af&itok=6QPdbiZo)
Researchers used the world’s first exascale supercomputer to run one of the largest simulations of an alloy ever and achieve near-quantum accuracy.
![Frontier’s exascale power enables the Energy, Exascale and Earth System Model-Multiscale Modeling Framework — or E3SM-MMF — project to run years’ worth of climate simulations at unprecedented speed and scale. Credit: Mark Taylor/Sandia National Laboratories, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-11/E3SM-MMF.png?h=21f5ce54&itok=UAeMXyqa)
The world’s first exascale supercomputer will help scientists peer into the future of global climate change and open a window into weather patterns that could affect the world a generation from now.
![Luiz Leal portrait](/sites/default/files/styles/list_page_thumbnail/public/2023-11/2023-P12447_0.jpg?h=036a71b7&itok=pK390n3n)
ORNL’s Luiz Leal of the Department of Energy’s Oak Ridge National Laboratory is the recipient of the 2023 Seaborg Medal from the American Nuclear Society.
![ORNL researcher Anne Campbell will present a paper in Korea next year on materials support of carbon-free nuclear energy. Credit: Adam Malin, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-11/nuclear-future-72dpi_0.jpg?h=d1cb525d&itok=HCXlz2mw)
Anne Campbell, a researcher at ORNL, recently won the Young Leaders Professional Development Award from the Minerals, Metals & Materials Society, or TMS, and has been chosen as the first recipient of the Young Leaders International Scholar Program award from TMS and the Korean Institute of Metals and Materials, or KIM.
![An electromagnetic pulse, or EMP, can be triggered by a nuclear explosion in the atmosphere or by an electromagnetic generator in a vehicle or aircraft. Here’s the chain of reactions it could cause to harm electrical equipment on the ground. Credit: Andy Sproles/ORNL, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-11/EMP_illust04_0.png?h=21cd0a81&itok=M9UNd-n0)
Researchers at ORNL have been leading a project to understand how a high-altitude electromagnetic pulse, or EMP, could threaten power plants.
![Michael McGuire received the Director's Award for Outstanding Individual Accomplishment in Science and Technology at the 2023 Awards Night. Credit: Carlos Jones/ORNL, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-11/2023-P14861-McGuire-.jpg?h=ae975b82&itok=buJZK9Wl)
Michael McGuire’s recognition as the Oak Ridge National Laboratory's top scientist headlined the annual awards. ORNL Director Stephen Streiffer also presented Director’s Awards to two teams, for operational performance and continuous improvement, and to the night’s science communicator awardee