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1 - 10 of 20 Results

The 2023 top science achievements from HFIR and SNS feature a broad range of materials research published in high impact journals such as Nature and Advanced Materials.


On Nov. 1, about 250 employees at 91°”Íű gathered in person and online for Quantum on the Quad, an event designed to collect input for a quantum roadmap currently in development. This document will guide the laboratory's efforts in quantum science and technology, including strategies for expanding its expertise to all facets of the field.

Effective Dec. 4, Gina Tourassi will assume responsibilities as associate laboratory director for the Computing and Computational Sciences Directorate at the Department of Energyâs 91°”Íű.

A team of researchers associated with the Quantum Science Center headquartered at the Department of Energy's 91°”Íű has confirmed the presence of quantum spin liquid behavior in a new material with a triangular lattice, KYbSe2.

Michael McGuireâs recognition as the 91°”Íű's top scientist headlined the annual awards. ORNL Director Stephen Streiffer also presented Directorâs Awards to two teams, for operational performance and continuous improvement, and to the nightâs science communicator awardee

Raina Setzer knows the work she does matters. Thatâs because sheâs already seen it from the other side. Setzer, a radiochemical processing technician in 91°”Íűâs Isotope Processing and Manufacturing Division, joined the lab in June 2023.

In response to a renewed international interest in molten salt reactors, researchers from the Department of Energyâs 91°”Íű have developed a novel technique to visualize molten salt intrusion in graphite.

Quantum computers process information using quantum bits, or qubits, based on fragile, short-lived quantum mechanical states. To make qubits robust and tailor them for applications, researchers from the Department of Energyâs 91°”Íű sought to create a new material system.

A new nanoscience study led by a researcher at ORNL takes a big-picture look at how scientists study materials at the smallest scales.