![White car (Porsche Taycan) with the hood popped is inside the building with an american flag on the wall.](/sites/default/files/styles/featured_square_large/public/2024-06/2024-P09317.jpg?h=8f9cfe54&itok=m6sQhZRq)
Filter News
Area of Research
- (-) Neutron Science (43)
- (-) Sensors and Controls (1)
- Advanced Manufacturing (7)
- Biology and Environment (16)
- Clean Energy (58)
- Computer Science (1)
- Fusion and Fission (5)
- Fusion Energy (1)
- Isotopes (1)
- Materials (37)
- Materials for Computing (6)
- National Security (14)
- Nuclear Science and Technology (4)
- Supercomputing (27)
News Topics
- (-) 3-D Printing/Advanced Manufacturing (3)
- (-) Artificial Intelligence (1)
- (-) Composites (1)
- (-) Neutron Science (40)
- (-) Security (2)
- (-) Transportation (2)
- Big Data (1)
- Bioenergy (3)
- Biology (4)
- Biomedical (5)
- Biotechnology (1)
- Climate Change (1)
- Computer Science (7)
- Coronavirus (5)
- Cybersecurity (1)
- Decarbonization (1)
- Energy Storage (2)
- Environment (3)
- Frontier (1)
- Fusion (1)
- High-Performance Computing (2)
- Materials (6)
- Materials Science (13)
- Microscopy (1)
- Nanotechnology (6)
- National Security (1)
- Nuclear Energy (1)
- Physics (7)
- Quantum Science (4)
- Space Exploration (1)
- Summit (5)
- Sustainable Energy (2)
Media Contacts
![The sensors measure parameters like temperature, chemicals and electric grid elements for industrial and electrical applications. Credit: Carlos Jones/Oak Ridge National Laboratory, U.S. Dept. of Energy The sensors measure parameters like temperature, chemicals and electric grid elements for industrial and electrical applications. Credit: Carlos Jones/Oak Ridge National Laboratory, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/drone%20inspecting%20EPB%20pole%20mounted%20transformers.jpg?itok=CiRIK4cC)
Brixon, Inc., has exclusively licensed a multiparameter sensor technology from the Department of Energy’s Oak Ridge National Laboratory. The integrated platform uses various sensors that measure physical and environmental parameters and respond to standard security applications.
![COHERENT collaborators were the first to observe coherent elastic neutrino–nucleus scattering. Their results, published in the journal Science, confirm a prediction of the Standard Model and establish constraints on alternative theoretical models. Image c COHERENT collaborators were the first to observe coherent elastic neutrino–nucleus scattering. Their results, published in the journal Science, confirm a prediction of the Standard Model and establish constraints on alternative theoretical models. Image c](/sites/default/files/styles/list_page_thumbnail/public/SLIDESHOW%202_collaboration.jpg?itok=icKSVyYi)
After more than a year of operation at the Department of Energy’s (DOE’s) Oak Ridge National Laboratory (ORNL), the COHERENT experiment, using the world’s smallest neutrino detector, has found a big fingerprint of the elusive, electrically neutral particles that interact only weakly with matter.
![ORNL Image](/sites/default/files/styles/list_page_thumbnail/public/2017-S00094_2.jpg?itok=ZGWBnMOv)
Researchers used neutrons to probe a running engine at ORNL’s Spallation Neutron Source
![Vanadium atoms (blue) have unusually large thermal vibrations that stabilize the metallic state of a vanadium dioxide crystal. Red depicts oxygen atoms.](/sites/default/files/styles/list_page_thumbnail/public/2020-06/82289_web.jpg?h=05d1a54d&itok=_5hHRzzR)
For more than 50 years, scientists have debated what turns particular oxide insulators, in which electrons barely move, into metals, in which electrons flow freely.