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Researcher
- Andrzej Nycz
- Michael Kirka
- Chris Masuo
- Rangasayee Kannan
- Ryan Dehoff
- Adam Stevens
- Alex Walters
- Christopher Ledford
- Kuntal De
- Luke Meyer
- Peeyush Nandwana
- Udaya C Kalluri
- Vincent Paquit
- William Carter
- Alexander I Kolesnikov
- Alexei P Sokolov
- Alice Perrin
- Amir K Ziabari
- Bekki Mills
- Beth L Armstrong
- Biruk A Feyissa
- Brian Post
- Bruce Hannan
- Clay Leach
- Corson Cramer
- Dave Willis
- Debjani Pal
- Fred List III
- James Klett
- John Wenzel
- Joshua Vaughan
- Keith Carver
- Keju An
- Loren L Funk
- Luke Chapman
- Mark Loguillo
- Matthew B Stone
- Patxi Fernandez-Zelaia
- Peter Wang
- Philip Bingham
- Polad Shikhaliev
- Richard Howard
- Roger G Miller
- Sarah Graham
- Shannon M Mahurin
- Singanallur Venkatakrishnan
- Steve Bullock
- Sudarsanam Babu
- Sydney Murray III
- Tao Hong
- Theodore Visscher
- Thomas Butcher
- Tomonori Saito
- Trevor Aguirre
- Vasilis Tzoganis
- Vasiliy Morozov
- Victor Fanelli
- Vladislav N Sedov
- William Peter
- Xiaohan Yang
- Yacouba Diawara
- Yan-Ru Lin
- Ying Yang
- Yukinori Yamamoto
- Yun Liu

We presented a novel apparatus and method for laser beam position detection and pointing stabilization using analog position-sensitive diodes (PSDs).

A pressure burst feature has been designed and demonstrated for relieving potentially hazardous excess pressure within irradiation capsules used in the ORNL High Flux Isotope Reactor (HFIR).

ORNL has developed a large area thermal neutron detector based on 6LiF/ZnS(Ag) scintillator coupled with wavelength shifting fibers. The detector uses resistive charge divider-based position encoding.

Neutron scattering experiments cover a large temperature range in which experimenters want to test their samples.

We present the design, assembly and demonstration of functionality for a new custom integrated robotics-based automated soil sampling technology as part of a larger vision for future edge computing- and AI- enabled bioenergy field monitoring and management technologies called

Neutron beams are used around the world to study materials for various purposes.
Red mud residue is an industrial waste product generated during the processing of bauxite ore to extract alumina for the steelmaking industry. Red mud is rich in minerals in bauxite like iron and aluminum oxide, but also heavy metals, including arsenic and mercury.

High strength, oxidation resistant refractory alloys are difficult to fabricate for commercial use in extreme environments.