Coalition of research universities dedicated to advancing quantum science
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UAlbany sophomore Collin Flynn spent his summer studying the electrical properties of moon soil in support of ongoing efforts to get humans back to the moon, thanks to a 10-week research opportunity provided through the College of Nanotechnology, Science, and Engineering's Summer Undergraduate Research Program.
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Until now there was an upper limit to the energy produced by atoms irradiated with laser light. Now UC San Diego researchers have crossed the threshold using helium atoms and intense UV lasers.
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A multidisciplinary team of researchers including computer scientists at UC San Diego has been awarded a $37.5 million grant from the National Science Foundation for a center aimed at designing practical and self-correcting quantum computers from top to bottom,.
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Physicists from the University of Amsterdam have teamed up with colleagues from Zürich to experimentally verify a curious phenomenon that had already been predicted by theory: an atomic-scale effect similar to how a football curves when kicked with spin. The results were published in the journal Physical Review Letters earlier this month.
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Funding from the National Science Foundation will expand the quantum workforce and advance research projects including more accurate atomic clocks and sensors for early detection of disease.
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Understanding and wielding the quantum properties of nature is the ambitious objective of eight research institutes that will collectively receive more than $290 million from the U.S. National Science…
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A quantum particle that crosses a ‘duality defect’ – a boundary between order and disorder – is never reflected. It always passes through, but it comes out changed: not a particle, but a spread-out, thread-like excitation that researchers compare to a wisp of fog.
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The Department of Energy’s (DOE) Oak Ridge National Laboratory (ORNL) convened scientists, engineers and technology leaders for the 2026 Southeastern Quantum Conference (SQC), bringing together experts from academia, national laboratories, industry and government to advance quantum information science and strengthen collaborations that support U.S. competitiveness.
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Graphene is an exceptionally useful material for creating batteries, catalysts, and electronic devices. Yet producing graphene typically requires temperatures as high as 900°C, limiting energy efficiency and making structural control difficult. To make graphene production more practical, a recent study has overcome this long-standing temperature barrier. In a study published in the Journal of the
Machine learning doesn’t replace human intelligence, but it can outlast human endurance, which makes it a very helpful tool for chemistry and material discovery. Scientists know the machine learning models can make predictions based on the vast reams of data it is trained on, but can it take it a step further and massively scale up testing out those predictions? “We already see that AI is powerful
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Technology & InnovationQueen Mary University of London
Scientists could have a new way to explore the hidden behaviour of matter, thanks to research involving Queen Mary University of London that uses a quantum computer to carry out a new form of computational spectroscopy. Spectroscopy is an important scientific technique used to understand the properties of matter. By analysing how materials and molecules respond to energy or light, researchers can
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