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Researcher
- Benjamin Manard
- Andrzej Nycz
- Chris Masuo
- Cyril Thompson
- Hongbin Sun
- Luke Meyer
- Prashant Jain
- William Carter
- Alexander I Kolesnikov
- Alexander I Wiechert
- Alexei P Sokolov
- Alex Walters
- Andrew F May
- Bekki Mills
- Ben Garrison
- Brad Johnson
- Brandon A Wilson
- Bruce Hannan
- Callie Goetz
- Charles F Weber
- Christopher Hobbs
- Costas Tsouris
- Dave Willis
- Eddie Lopez Honorato
- Fred List III
- Govindarajan Muralidharan
- Hsin Wang
- Ian Greenquist
- Ilias Belharouak
- Isaac Sikkema
- Joanna Mcfarlane
- John Wenzel
- Jonathan Willocks
- Joseph Olatt
- Joshua Vaughan
- Keith Carver
- Keju An
- Kunal Mondal
- Loren L Funk
- Luke Chapman
- Mahim Mathur
- Mark Loguillo
- Matthew B Stone
- Matt Kurley III
- Matt Vick
- Mike Zach
- Mingyan Li
- Nate See
- N Dianne Ezell
- Nedim Cinbiz
- Nithin Panicker
- Oscar Martinez
- Peter Wang
- Polad Shikhaliev
- Pradeep Ramuhalli
- Praveen Cheekatamarla
- Richard Howard
- Rodney D Hunt
- Rose Montgomery
- Ruhul Amin
- Ryan Heldt
- Sam Hollifield
- Shannon M Mahurin
- Sydney Murray III
- Tao Hong
- Theodore Visscher
- Thomas Butcher
- Thomas R Muth
- Tomonori Saito
- Tyler Gerczak
- Ugur Mertyurek
- Vandana Rallabandi
- Vasilis Tzoganis
- Vasiliy Morozov
- Venugopal K Varma
- Victor Fanelli
- Vishaldeep Sharma
- Vittorio Badalassi
- Vladislav N Sedov
- Yacouba Diawara
- Yun Liu

High-gradient magnetic filtration (HGMF) is a non-destructive separation technique that captures magnetic constituents from a matrix containing other non-magnetic species. One characteristic that actinide metals share across much of the group is that they are magnetic.

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

The invention presented here addresses key challenges associated with counterfeit refrigerants by ensuring safety, maintaining system performance, supporting environmental compliance, and mitigating health and legal risks.

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.

Sintering additives to improve densification and microstructure control of UN provides a facile approach to producing high quality nuclear fuels.

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

A novel approach is presented herein to improve time to onset of natural convection stemming from fuel element porosity during a failure mode of a nuclear reactor.

Currently there is no capability to test materials, sensors, and nuclear fuels at extremely high temperatures and under radiation conditions for nuclear thermal rocket propulsion or advanced reactors.

Neutron beams are used around the world to study materials for various purposes.