Researchers have been able to initiate a controlled movement in the very heart of an atom. They caused the atomic nucleus to interact with one of the electrons in the outermost shells of the atom.
The QDM is a fantastic and easy-to-use tool that can access length-scales and sensitivity of measurement that were previously inaccessible.” — Dr. James Bryson, Assistant Professor of Mineralogy at ...
EuQlid Inc., a startup that has developed a quantum device for analyzing the inner workings of semiconductors, launched today with $3 million in funding. The capital was provided by QDNL and ...
Morning Overview on MSN
Physicists patch a major hole in a key quantum theorem
Physicists have long relied on elegant theorems to connect the abstract math of quantum theory with the tangible behavior of ...
Oh, the wonderful and mind-twisting world of quantum mechanics. However, in order to harness the magic-like potential of bending qubits to one’s will, there is a whole lot of nitty gritty engineering ...
Scientists from the Massachusetts Institute of Technology (MIT) in the U.S. have made a groundbreaking achievement after they captured the first images of individual atoms freely interacting in space.
Scientists have developed a new advanced microscopy tool to “write” with atoms, placing those atoms exactly where they are needed to give a material new properties. The development was performed by a ...
World’s Fastest Electron Microscope, Quantum Consciousness and the Origin of Life Host Erika Hamden explores quantum mysteries. We visit a University of Arizona lab where the world’s fastest electron ...
…and Toshiba-Single Quantum collaboration doubles range of secure QKD communications. Quione glass cell with strontium gas cloud in the center. Quantum physics needs high-precision sensing techniques ...
Where do you see patterns in chaos? It has been proven, in the incredibly tiny quantum realm, by an international team co-led by UC Santa Cruz physicist Jairo Velasco, Jr. In a new paper published on ...
A new technology to continuously place individual atoms exactly where they are needed could lead to new materials for devices that address critical needs for the field of quantum computing and ...
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