Filter News
Area of Research
- (-) Computer Science (8)
- (-) Neutron Science (11)
- Advanced Manufacturing (1)
- Biological Systems (2)
- Biology and Environment (44)
- Clean Energy (44)
- Computational Biology (1)
- Computational Engineering (1)
- Electricity and Smart Grid (2)
- Fusion and Fission (16)
- Fusion Energy (11)
- Materials (15)
- Materials for Computing (3)
- National Security (18)
- Nuclear Science and Technology (11)
- Quantum information Science (7)
- Sensors and Controls (1)
- Supercomputing (41)
News Topics
- (-) Artificial Intelligence (9)
- (-) Bioenergy (3)
- (-) Grid (2)
- (-) Machine Learning (6)
- (-) Quantum Science (3)
- 3-D Printing/Advanced Manufacturing (3)
- Big Data (4)
- Biology (1)
- Biomedical (7)
- Buildings (1)
- Chemical Sciences (2)
- Clean Water (2)
- Computer Science (18)
- Coronavirus (3)
- Decarbonization (1)
- Energy Storage (5)
- Environment (5)
- Fossil Energy (1)
- High-Performance Computing (2)
- Materials (8)
- Materials Science (10)
- Mathematics (1)
- Microscopy (2)
- Nanotechnology (3)
- National Security (1)
- Neutron Science (56)
- Nuclear Energy (2)
- Physics (2)
- Polymers (1)
- Quantum Computing (1)
- Security (1)
- Space Exploration (2)
- Summit (2)
- Sustainable Energy (2)
- Transportation (2)
Media Contacts
Neutron experiments can take days to complete, requiring researchers to work long shifts to monitor progress and make necessary adjustments. But thanks to advances in artificial intelligence and machine learning, experiments can now be done remotely and in half the time.
Nonfood, plant-based biofuels have potential as a green alternative to fossil fuels, but the enzymes required for production are too inefficient and costly to produce. However, new research is shining a light on enzymes from fungi that could make biofuels economically viable.
Oak Ridge National Laboratory researchers are developing a first-of-its-kind artificial intelligence device for neutron scattering called Hyperspectral Computed Tomography, or HyperCT.
A team led by the U.S. Department of Energy’s Oak Ridge National Laboratory demonstrated the viability of a “quantum entanglement witness” capable of proving the presence of entanglement between magnetic particles, or spins, in a quantum material.
Oak Ridge National Laboratory, University of Tennessee and University of Central Florida researchers released a new high-performance computing code designed to more efficiently examine power systems and identify electrical grid disruptions, such as
To minimize potential damage from underground oil and gas leaks, Oak Ridge National Laboratory is co-developing a quantum sensing system to detect pipeline leaks more quickly.
An ORNL-led team comprising researchers from multiple DOE national laboratories is using artificial intelligence and computational screening techniques – in combination with experimental validation – to identify and design five promising drug therapy approaches to target the SARS-CoV-2 virus.
At the Department of Energy’s Oak Ridge National Laboratory, scientists use artificial intelligence, or AI, to accelerate the discovery and development of materials for energy and information technologies.
In the race to identify solutions to the COVID-19 pandemic, researchers at the Department of Energy’s Oak Ridge National Laboratory are joining the fight by applying expertise in computational science, advanced manufacturing, data science and neutron science.
Biological membranes, such as the “walls” of most types of living cells, primarily consist of a double layer of lipids, or “lipid bilayer,” that forms the structure, and a variety of embedded and attached proteins with highly specialized functions, including proteins that rapidly and selectively transport ions and molecules in and out of the cell.