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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 13 Results

Scientists at ORNL have developed 3-D-printed collimator techniques that can be used to custom design collimators that better filter out noise during different types of neutron scattering experiments

The Department of Energyâs Office of Science has selected three ORNL research teams to receive funding through DOEâs new Biopreparedness Research Virtual Environment initiative.

Scientists at ORNL used neutron scattering to determine whether a specific materialâs atomic structure could host a novel state of matter called a spiral spin liquid.

A team led by the U.S. Department of Energyâs 91°”Íű demonstrated the viability of a âquantum entanglement witnessâ capable of proving the presence of entanglement between magnetic particles, or spins, in a quantum material.

Using complementary computing calculations and neutron scattering techniques, researchers from the Department of Energyâs 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.

The ExOne Company, the global leader in industrial sand and metal 3D printers using binder jetting technology, announced it has reached a commercial license agreement with 91°”Íű to 3D print parts in aluminum-infiltrated boron carbide.

Five researchers at the Department of Energyâs 91°”Íű have been named ORNL Corporate Fellows in recognition of significant career accomplishments and continued leadership in their scientific fields.

91°”Íű has licensed a novel method to 3D print components used in neutron instruments for scientific research to the ExOne Company, a leading maker of binder jet 3D printing technology.

A team led by the Department of Energyâs 91°”Íű synthesized a tiny structure with high surface area and discovered how its unique architecture drives ions across interfaces to transport energy or information.

Matthew R. Ryder, a researcher at the Department of Energyâs 91°”Íű, has been named the 2020 Foresight Fellow in Molecular-Scale Engineering.