Filter News
Area of Research
- (-) Computer Science (6)
- (-) Fusion Energy (4)
- Advanced Manufacturing (10)
- Biological Systems (2)
- Biology and Environment (60)
- Building Technologies (2)
- Clean Energy (98)
- Electricity and Smart Grid (1)
- Energy Sciences (1)
- Functional Materials for Energy (1)
- Fusion and Fission (9)
- Isotope Development and Production (1)
- Isotopes (2)
- Materials (97)
- Materials Characterization (1)
- Materials for Computing (17)
- Materials Under Extremes (1)
- National Security (9)
- Neutron Science (33)
- Nuclear Science and Technology (8)
- Quantum information Science (9)
- Supercomputing (47)
- Transportation Systems (1)
News Type
News Topics
- (-) Materials Science (3)
- (-) Quantum Science (3)
- (-) Sustainable Energy (4)
- 3-D Printing/Advanced Manufacturing (1)
- Advanced Reactors (7)
- Artificial Intelligence (6)
- Big Data (4)
- Buildings (1)
- Computer Science (17)
- Cybersecurity (1)
- Energy Storage (2)
- Environment (1)
- Exascale Computing (1)
- Frontier (1)
- Fusion (13)
- Grid (2)
- High-Performance Computing (2)
- Machine Learning (4)
- Materials (1)
- Nuclear Energy (10)
- Summit (2)
Media Contacts
ORNL will team up with six of eight companies that are advancing designs and research and development for fusion power plants with the mission to achieve a pilot-scale demonstration of fusion within a decade.
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.
Oak Ridge National Laboratory researchers designed and field-tested an algorithm that could help homeowners maintain comfortable temperatures year-round while minimizing utility costs.
Using complementary computing calculations and neutron scattering techniques, researchers from the Department of Energy’s Oak Ridge and Lawrence Berkeley national laboratories and the University of California, Berkeley, discovered the existence of an elusive type of spin dynamics in a quantum mechanical system.
A team led by Oak Ridge National Laboratory developed a novel, integrated approach to track energy-transporting ions within an ultra-thin material, which could unlock its energy storage potential leading toward faster charging, longer-lasting devices.
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.
To better determine the potential energy cost savings among connected homes, researchers at Oak Ridge National Laboratory developed a computer simulation to more accurately compare energy use on similar weather days.
Three researchers at Oak Ridge National Laboratory will lead or participate in collaborative research projects aimed at harnessing the power of quantum mechanics to advance a range of technologies including computing, fiber optics and network
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.
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.