Using first-principles calculations, a research group led by Prof. Wang Xianlong from the Hefei Institutes of Physical ...
Using first-principles calculations, a research group led by Prof. WANG Xianlong from the Hefei Institutes of Physical Science of the Chinese Academy ...
The report provides a comprehensive analysis of the rapidly evolving quantum sensing landscape, offering essential insights for investors, technology companies, and end-users navigating this ...
Working at nanoscale dimensions, a team of scientists led by the Department of Energy's Oak Ridge National Laboratory ...
Scientists encased nanodiamonds in tiny moving droplets of water to improve quantum sensing. The new technique lets researchers detect trace amounts of certain ions and molecules, and could someday ...
Orbray has developed production technology for the world's largest self-standing single-crystal (111) diamond substrates, ...
A single-spin qubit probes nanoscale spin fluctuations to reveal magnetic interactions in quantum materials. Credit: Andy Sproles/ORNL, U.S. Dept. of ...
For decades, something strange has lurked inside the icy giants of our solar system. Uranus and Neptune, distant blue worlds ...
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AZoSensors on MSNRevealing High-Speed Magnetic Fluctuations at the NanoscaleThis study reveals nanoscale spin fluctuations in magnetic materials, offering insights for advancements in spintronics and ...
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AZoSensors on MSNRapid and Sensitive Trace Chemical Detection via Nanodiamond-Based Quantum SensingBerkeley Lab's innovative use of nanodiamonds in microdroplets advances quantum sensing, improving detection of paramagnetic chemicals in small samples.
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