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PROMOTED STORIES

 * Revealed: Quantum Entanglement among Quarks Quantum simulations reveal the
   presence of entanglement among the quarks produced in high energy collisions.
 * Unlocking the Secrets of the Universe through Neutrinoless Double Beta Decay
   Scientists investigate neutrinoless double beta decay through neutrino mass
   and the nuclear structure of germanium-76.
 * Gluon Spins Align with the Proton They’re In A measurement tracking ‘direct’
   photons from polarized proton collisions points to positive gluon
   polarization.
 * Seeing the Shape of Atomic Nuclei New theoretical work indicates that the
   future Electron Ion Collider can be used to measure the shape of atomic
   nuclei.






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LATEST HIGHLIGHTS

Revealed: Quantum Entanglement among Quarks Unlocking the Secrets of the
Universe through Neutrinoless Double Beta Decay Gluon Spins Align with the
Proton They’re In Seeing the Shape of Atomic Nuclei Measurement Technique Sheds
New Light on Semiconductors for Solar Fuels To Study Radioactive Neptunium and
Plutonium, Researchers Establish a Novel Chemistry


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Advanced Scientific Computing Research (ASCR) Basic Energy Sciences (BES)
Biological and Environmental Research (BER) Fusion Energy Sciences (FES) High
Energy Physics (HEP) Nuclear Physics (NP) Workforce Development for Teachers and
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SUPPORTING THE PREPARATION OF A HIGHLY SKILLED WORKFORCE

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(STTR) Project Assessment (OPA) Isotope R&D and Production (IP) Accelerator R&D
and Production (ARDAP)


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LATEST HIGHLIGHTS

Revealed: Quantum Entanglement among Quarks Unlocking the Secrets of the
Universe through Neutrinoless Double Beta Decay Gluon Spins Align with the
Proton They’re In Seeing the Shape of Atomic Nuclei Measurement Technique Sheds
New Light on Semiconductors for Solar Fuels To Study Radioactive Neptunium and
Plutonium, Researchers Establish a Novel Chemistry


MEASUREMENT TECHNIQUE SHEDS NEW LIGHT ON SEMICONDUCTORS FOR SOLAR FUELS

Read more about Measurement Technique Sheds New Light on Semiconductors for
Solar Fuels


TO STUDY RADIOACTIVE NEPTUNIUM AND PLUTONIUM, RESEARCHERS ESTABLISH A NOVEL
CHEMISTRY

Read more about To Study Radioactive Neptunium and Plutonium, Researchers
Establish a Novel Chemistry


LONG-LIVED STATE IN RADIOACTIVE SODIUM DISCOVERED AT THE FACILITY FOR RARE
ISOTOPE BEAMS

Read more about Long-Lived State in Radioactive Sodium Discovered at the
Facility for Rare Isotope Beams


TESTING THE GALLIUM ANOMALY

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ADVANCED COMPUTING BRINGS AUTONOMOUS INVESTIGATIONS TO NANOSTRUCTURED SURFACES

Machine learning and artificial intelligence accelerate nanomaterials
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PROBING THE INTRICATE STRUCTURES OF 2D MATERIALS AT THE NANOSCALE

A new microscopy technique measures atomic-level distortions, twist angles, and
interlayer spacing in graphene.


MODELING POLYMERS FOR NEXT-GENERATION MANUFACTURING AND SUSTAINABILITY

New computational methods “fingerprint” polymer motions under flow.


ENGINEERS DEVELOP A NEW DETECTOR SYSTEM FOR QUANTUM COMPUTING

A new system for detecting photons in laser-powered quantum computers brings
these systems closer to reality.

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DISCOVERY OF LOW-LYING ISOMERIC STATES IN CESIUM-136 HAS APPLICATIONS IN
PARTICLE ASTROPHYSICS


ADVANCED COMPUTING BRINGS AUTONOMOUS INVESTIGATIONS TO NANOSTRUCTURED SURFACES


PROBING THE INTRICATE STRUCTURES OF 2D MATERIALS AT THE NANOSCALE


THE FACILITY FOR RARE ISOTOPE BEAMS AFTER ONE YEAR OF OPERATION


ENGINEERS DEVELOP A NEW DETECTOR SYSTEM FOR QUANTUM COMPUTING


SCIENTISTS PROBE THE EMERGENT STRUCTURE OF THE CARBON NUCLEUS


USING GRAVITATIONAL WAVES TO OBSERVE THERMAL EFFECTS IN BINARY NEUTRON STAR
MERGERS


BETTER TOGETHER: NEW 2D X-RAY MULTILAYER LENS OVERCOMES ALIGNMENT CHALLENGE


3D-PRINTED ALLOYS OFFER IMPROVED STRENGTH AND DUCTILITY

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