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      • IMAGINE | Laue Diffractometer | CG-4D
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      • POWDER | Neutron Powder Diffractometer | HB-2A
      • PTAX | Polarized Triple-Axis Spectrometer | HB-1
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      • EQ-SANS | Extended Q-Range Small-Angle Neutron Scattering Diffractometer | BL-6
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      • MAGREF | Magnetism Reflectometer | BL-4A
      • MANDI | Macromolecular Neutron Diffractometer | BL-11B
      • NOMAD | Nanoscale-Ordered Materials Diffractometer | BL-1B
      • NSE | Neutron Spin Echo Spectrometer | BL-15
      • POWGEN | Powder Diffractometer | BL-11A
      • SEQUOIA | Fine-Resolution Fermi Chopper Spectrometer | BL-17
      • SNAP | Spallation Neutrons and Pressure Diffractometer | BL-3
      • TOPAZ | Single-Crystal Diffractometer | BL-12
      • USANS | Ultra-Small-Angle Neutron Scattering Instrument | BL-1A
      • VENUS | Versatile Neutron Imaging Instrument | BL-10
      • VISION | Vibrational Spectrometer | BL-16B
      • VULCAN | Engineering Materials Diffractometer | BL-7
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Home » All News

All News

  • The recently commissioned 11 Tesla horizontal field magnet at GP-SANS will enable advanced neutron scattering research. Credit: Genevieve Martin/ORNL.
    11 Tesla Magnet Commissioned for HFIR’s GP-SANS instrument
    August 30, 2016
  • Chris Fancher, ORNL postdoctoral research associate, and Kate Page, SNS instrument scientist, collaborated to develop a new approach for analyzing diffraction data. Image credit: Genevieve Martin/ORNL
    New Approach to Determining How Atoms Are Arranged in Materials
    August 24, 2016
  • Defects, Electrons, and a Long-Standing Controversy
    August 24, 2016
  • Michael Waddell and Patrick Nave took the challenge of ORNL's Challenge Program this summer head-on. Michael, from Columbia University, and Patrick, from Florida State University, ended their internships last week with both national laboratory experience and successful research projects.
    Two ORNL interns step up to the Challenge
    August 23, 2016
  • From left, David Dean, Alfredo Galindo-Uribarri and Chris Bryan of Oak Ridge National Laboratory check on a prototype detector at the High Flux Isotope Reactor, a Department of Energy Office of Science User Facility that creates continuous neutron beams. The prototype will mine neutrinos formed as a byproduct of radioactive decay processes for one of three neutrino experiments with major ORNL participation. Image credit: Oak Ridge National Laboratory, U.S. Dept. of Energy; photographer Genevieve Martin
    Neutrino experiments utilize ORNL experts, equipment to explore the unknown
    August 23, 2016
  • Jack Johnson of the Scripps Research Institute delivered the opening lecture at the fifth International Symposium on Diffraction Structural Biology, held August 7–10, 2016, in Knoxville, Tennessee. Image credit: Carlos Jones/ORNL
    Fifth International Symposium on Diffraction Structural Biology
    August 12, 2016
  • Theoretical condensed matter physicist Cristian Batista brings advanced knowledge of theory to expand upon the experimental physics research conducted at ORNL. (Image credit: Genevieve Martin)
    Cristian Batista: Where Theory Meets Experiment
    August 8, 2016
  • A group of NXS 2016 students learns about neutron triple-axis spectrometry from Instrument Scientist Songxue Chi. Image credit: Genevieve Martin/ORNL
    Students gain hands-on neutron science education at NXS 2016
    August 8, 2016
  • Summer science: High school STEM teachers, students gain research experience at ORNL
    July 29, 2016
  • Bryan Chakoumakos, a researcher at the Department of Energy’s Oak Ridge National Laboratory, has been elected fellow of the American Crystallographic Association.
    Chakoumakos elected American Crystallographic Association fellow
    July 25, 2016
  • Georgetown University researcher Rahul Saxena studies E. coli DnaA protein using the newly upgraded radiation detection generator device in BSMD’s X-ray lab at SNS. Image credit: Genevieve Martin/ORNL
    Georgetown researcher uses upgraded SNS instrument to study E. coli DnaA
    July 11, 2016
  • Left: The surface of a lithium-rich cathode particle is treated with carbon dioxide gas. Right: Carbon dioxide gas molecules extract oxygen atoms from the lattice of the lithium-rich cathode particle to create oxygen vacancies at the surface. Credit: Laboratory for Energy Storage and Conversion, UC San Diego.
    Researchers Improve Performance of Cathode Material by Controlling Oxygen Activity
    July 8, 2016
  • The High Flux Isotope Reactor, a Department of Energy Office of Science User Facility that creates continuous neutron beams, is the site of a new neutrino experiment. Yale-led PROSPECT will probe neutrinos formed as a byproduct of radioactive decay processes. Image credit: Oak Ridge National Laboratory, U.S. Dept. of Energy; photographer Genevieve Martin
    Scientists seek new physics using ORNL’s intense neutrino source
    June 20, 2016
  • Illustration shows the one dimensional Yb ion chain in the quantum magnet Yb2Pt2Pb. The Yb orbitals are depicted as the iso-surfaces, and the green arrows indicate the antiferromagnetically aligned Yb magnetic moments. The particular overlap of the orbitals allows the Yb moments to hop between the nearest and next nearest neighbors along the chain direction, resulting in the two and four spinon excitations. (Image credit: ORNL/Genevieve Martin)
    Neutrons reveal unexpected magnetism in rare-earth alloy
    June 16, 2016
  • ORNL’s Andrew Christianson and Stuart Calder conducted neutron diffraction studies at the lab’s High Flux Isotope Reactor to clearly define the magnetic order of an osmium-based material. Image credit: ORNL/Genevieve Martin
    ORNL research finds magnetic material could host wily Weyl fermions
    June 16, 2016
  • A 3D structure of the HIV-1 protease in cartoon representation with bound clinical drug darunavir (shown as sticks). The catalytic site contains two closely positioned aspartic acid residues. The insert depicts the hydrogen transfer reaction in the catalytic site, captured for the first time by neutron crystallography. (Credit: Jill Hemman and Andrey Kovalevsky, Oak Ridge National Laboratory)
    Neutrons probe structure of enzyme critical to development of next-generation HIV drugs
    June 16, 2016
  • Much of what we know about underground contamination comes from scientists such as geochemist David Wesolowski and his group at ORNL. Using unique tools such as the neutron scattering capabilities at ORNL’s Spallation Neutron Source and High Flux Isotope Reactor, Wesolowski and his colleagues see rocks very differently from the way most of us do. Credit: US Army Corps of Engineers
    Rocks and neutrons
    June 1, 2016
  •  Illustration showing structure of Bi2Se3-EuS bilayer film. On the top layer the depth profile of the magnetization vector distribution of Eu atoms is represented by green arrows. The light purple spheres represent Bi2Se3 interfacial layers magnetized in close proximity to EuS FMI. (Image credit: ORNL/Jill Hemman)
    Neutrons tap into magnetism in topological insulators at high temperatures
    May 9, 2016
  • Neutrons Image Additive Manufactured Turbine Blades in 3-D
    Neutrons Image Additive Manufactured Turbine Blades in 3-D
    April 29, 2016
  • ORNL researchers discover new state of water molecule
    ORNL researchers discover new state of water molecule
    April 25, 2016

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        • HFIR - Take a Virtual Tour
      • Neutron Nexus
        • Nexus Program Overview
        • Neutron Ambassador Program
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        • Why Neutrons? See Basic2Breakthrough Video
        • A Glimpse into Neutron Sciences at ORNL
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    • Future
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        • Second Target Station
        • HFIR Beryllium Reflector Replacement
        • HFIR Cold Guide Hall Extension
        • HFIR Pressure Vessel Replacement Project
        • HFIR & SNS 5-Year Working Schedule
    • Science
      • Science
        • Overview
        • Science Highlights
      • Science Initiatives
        • Biological Materials and Systems
        • Chemistry
        • Geochemistry and Environmental Sciences
        • Computing, Modeling, and Data Analytics
        • Physics of Matter under Extremes
        • Materials and Engineering
        • Quantum Materials
        • Soft Matter and Polymers
      • Science Techniques
        • Neutron Scattering
          • Diffraction
          • Imaging
          • Reflectometry
          • Small Angle Neutron Scattering
          • Spectroscopy
        • Nuclear
          • Gamma Irradiation
          • In-Vessel Irradiation
          • Nuclear Forensics (Neutron Activation Analysis)
    • For Users
      • Introduction
        • Overview
        • Contact Us
      • Become A User
        • How to Submit a Proposal
        • Proposal Types
        • Proposal Writing Tips
        • IPTS Proposal Form
        • Integrated Proposal Tracking System (IPTS)
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        • BIO-SANS | Biological Small-Angle Neutron Scattering Instrument | CG-3
        • CTAX | Cold Neutron Triple-Axis Spectrometer | CG-4C
        • DEMAND | Dimensional Extreme Magnetic Neutron Diffractometer | HB-3A
        • DEV BEAMS | Instrument Development Beamline | HB-2D CG-1A CG-1B CG-4B
        • GP-SANS | General-Purpose Small-Angle Neutron Scattering Diffractometer | CG-2
        • HIDRA | High Intensity Diffractometer for Residual stress Analysis | HB-2B
        • IMAGINE | Laue Diffractometer | CG-4D
        • MARS | Multimodal Advanced Radiography Station | CG-1D
        • POWDER | Neutron Powder Diffractometer | HB-2A
        • PTAX | Polarized Triple-Axis Spectrometer | HB-1
        • TAX | Triple-Axis Spectrometer | HB-3
        • VERITAS | Versatile Intense Triple-Axis Spectrometer | HB-1A
        • WAND² | Wide-Angle Neutron Diffractometer | HB-2C
      • Spallation Neutron Source
        • ARCS | Wide Angular-Range Chopper Spectrometer | BL-18
        • BASIS | Backscattering Spectrometer | BL-2
        • CNCS | Cold Neutron Chopper Spectrometer | BL-5
        • CORELLI | Elastic Diffuse Scattering Spectrometer | BL-9
        • EQ-SANS | Extended Q-Range Small-Angle Neutron Scattering Diffractometer | BL-6
        • FNPB | Fundamental Neutron Physics Beam Line | BL-13
        • HYSPEC | Hybrid Spectrometer | BL-14B
        • LIQREF | Liquids Reflectometer | BL-4B
        • MAGREF | Magnetism Reflectometer | BL-4A
        • MANDI | Macromolecular Neutron Diffractometer | BL-11B
        • NOMAD | Nanoscale-Ordered Materials Diffractometer | BL-1B
        • NSE | Neutron Spin Echo Spectrometer | BL-15
        • POWGEN | Powder Diffractometer | BL-11A
        • SEQUOIA | Fine-Resolution Fermi Chopper Spectrometer | BL-17
        • SNAP | Spallation Neutrons and Pressure Diffractometer | BL-3
        • TOPAZ | Single-Crystal Diffractometer | BL-12
        • USANS | Ultra-Small-Angle Neutron Scattering Instrument | BL-1A
        • VENUS | Versatile Neutron Imaging Instrument | BL-10
        • VISION | Vibrational Spectrometer | BL-16B
        • VULCAN | Engineering Materials Diffractometer | BL-7
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