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      • BIO-SANS | Biological Small-Angle Neutron Scattering Instrument | CG-3
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      • 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
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      • 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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Home » All News

All News

  • A material’s spins, depicted as red spheres, are probed by scattered neutrons. Applying an entanglem
    Key witness helps scientists detect ‘spooky’ quantum entanglement in solid materials
    November 16, 2021
  • Vanderbilt University researchers used neutrons at ORNL to reveal the hydrogen bonding patterns between water molecules (shown in blue) and DNA. The findings could help provide insights into how water influences DNA function. Credit: ORNL/Jill Hemman
    Neutrons take a deep dive into water networks surrounding DNA
    November 4, 2021
  • Neutrons – ‘Stretchier’ alloys
    November 2, 2021
  • Virtual reality technology enabled look "inside" the Covid-19 virus and find an inhibitor molecule.
    Journeying ‘inside’ the COVID-19 viral protein to attack a weak point
    October 27, 2021
  • Quadrupolar Fluctuations in a Spin-1 Magnet
    Quadrupolar Fluctuations in a Spin-1 Magnet
    October 11, 2021
  • Pore Structure Determines Pathways of Rock Alteration
    Pore Structure Determines Pathways of Rock Alteration
    October 11, 2021
  • Fast Li‐ion Conductivity in New Thioborate Halides
    Fast Li‐ion Conductivity in New Thioborate Halides
    October 11, 2021
  • Neutron Imaging Enables Optimized Annealing for Inconel Components Made by Additive Manufacturing
    Neutron Imaging Enables Optimized Annealing for Inconel Components Made by Additive Manufacturing
    October 11, 2021
  • Electronic Properties of the Bulk and Surface States of Fe1+yTe1−xSex
    Electronic Properties of the Bulk and Surface States of Fe1+yTe1−xSex
    October 11, 2021
  • Conformation of Human ISG15 Protein in Complex with SARS-CoV-2 Papain-like Protease
    Conformation of Human ISG15 Protein in Complex with SARS-CoV-2 Papain-like Protease
    October 11, 2021
  • When quasiparticles cluster together, they cause spin chains in a quantum system to undergo a collec
    Subtle Spin: A Novel Study of Quantum Material Proves Theoretical Predictions
    October 8, 2021
  • Irreversible, plastic deformation causes extended crystalline defects in the quantum material stront
    Induced flaws in quantum materials could enhance superconducting properties
    October 7, 2021
  • Jeff Warren, at a HFIR beamline, injects water into corn plant roots. Credit: ORNL/Genevieve Martin
    The secret lives of corn plants: caught ‘on camera’
    September 16, 2021
  • The Second Target Station project selected 8 instruments to be built during its construction.
    ORNL Second Target Station project moves forward with selection of 8 initial neutron scattering instruments
    September 1, 2021
  • The “Founding Father” of lithium-ion batteries used SNS neutrons to confirm coating cathode material
    ‘Founding Father’ of lithium-ion batteries helps solve 40-year problem with his invention
    July 27, 2021
  • A representation of the crystal lattice of the thermoelectric compound Mg3Sb2 (magnesium atoms in or
    Buzz about thermoelectrics heats up with promising new magnesium-based materials
    July 22, 2021
  • Mechanical properties, such as strength and ductility, can be tailored by adding nanoprecipitates, r
    Tiny but mighty precipitates toughen a structural alloy
    July 8, 2021
  • Hydrodynamics in a Quantum Spin Chain
    Hydrodynamics in a Quantum Spin Chain
    July 1, 2021
  • Inhibitor Binding and Active Site Electrostatics in SARS-CoV-2 Main Protease
    Inhibitor Binding and Active Site Electrostatics in SARS-CoV-2 Main Protease
    July 1, 2021
  • Copolymer/Lipid Nano-Assembly as Membrane Mimetic
    Copolymer/Lipid Nano-Assembly as Membrane Mimetic
    July 1, 2021

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Neutron Sciences Directorate
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    • Home
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      • About
        • Overview
        • Neutron Science Careers
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        • Neutron Sciences Procurement Group
        • Neutron Ambassador Program
        • Why Neutron Scattering? See Basic2Breakthrough Video
      • Facilities
        • High Flux Isotope Reactor
        • Spallation Neutron Source
        • User Laboratories
        • SNS - Take a Virtual Tour
        • SNS Klystron Gallery - Take a Virtual Tour
        • HFIR - Take a Virtual Tour
      • Divisions
        • Executive Office
        • Neutron Scattering Division
        • Neutron Technologies Division
        • Research Accelerator Division
        • Research Reactors Division
    • Outreach/Education
      • Introduction
        • Overview
        • Contact Us
      • News & Events
        • HFIR Celebrates 60 Years
        • News Stories
        • Science Highlights
        • Workshops & Seminars
      • Virtual Tours
        • SNS - Take a Virtual Tour
        • SNS Klystron Gallery - Take a Virtual Tour
        • HFIR - Take a Virtual Tour
      • Neutron Nexus
        • Nexus Program Overview
        • Neutron Ambassador Program
        • New User Beamtime (NUBe) Program
        • Why Neutrons? See Basic2Breakthrough Video
        • A Glimpse into Neutron Sciences at ORNL
        • Instrument Selector Wheel
      • Educational Opportunities
        • Neutron Scattering School
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        • Neutron Scattering Graduate Research at ORNL
      • Neutrons Sciences Careers
        • Careers
        • See Neutron Sciences Open Positions
        • See Neutron Sciences Careers Flyer
    • Future
      • Overview
      • Projects & Upgrades
        • 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)
        • Proposal Statistics
        • Proposal Calls
        • New User Beamtime (NUBe) Program
      • User Guide
        • User Charter
        • Plan Your Visit
        • Plan Your Visit Checklist
        • Shipping Guide
        • Onsite at ORNL
        • After Your Experiment
        • User Guide to Remote Experiments
      • Support
        • Data Management
        • Sample Environment
        • User Laboratories
      • Quick Links
        • Center for Nanophase Materials Sciences (CNMS)
        • Integrated Proposal Tracking System (IPTS)
        • ORNL Guest Portal
        • Publications for SNS and HFIR (PuSH)
        • SNS-HFIR User Group (SHUG)
        • Shull Wollan Center
        • User Newsletter
        • Signup for Newsletter
        • User Survey Results
    • Industry
    • Publications
    • Instruments
      • Instruments
        • Overview
      • Support
        • Data Management
        • Sample Environment
        • User Laboratories
      • High Flux Isotope Reactor
        • 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
    • Staff