Recent research published in Science introduces a promising solid electrolyte material that could improve the performance of ...
A new chip-based quantum memory uses nanoprinted “light cages” to trap light inside atomic vapor, enabling fast, reliable ...
A joint research team from the Institute of Metal Research (IMR) of the Chinese Academy of Sciences and the Songshan Lake Materials Laboratory has achieved precise control and real-time observation of ...
A new chip-based quantum memory uses 3D-printed “light cages” to store light in atomic vapor with high precision. Quantum ...
Morning Overview on MSN
Tiny 3D-printed light cages could power a quantum internet leap
Tiny 3D-printed “light cages” are giving researchers a new way to catch and hold individual particles of light on a chip, a ...
A team of physicists has discovered a surprisingly simple way to build nuclear clocks using tiny amounts of rare thorium. By ...
A multi-disciplinary team of researchers linked atomic-scale features to efficient heat-to-electricity conversion, offering ...
By forcing crystal structures to compete, scientists uncovered a new way to make magnetism twist. Florida State University ...
Scientists have developed a groundbreaking on-chip quantum memory platform using 3D-nanoprinted hollow-core waveguides called ...
Morning Overview on MSN
Building quantum entanglement at the nanoscale
Quantum entanglement has shifted from a philosophical puzzle to a design brief for engineers working at the scale of atoms, ...
Tech Xplore on MSN
How chameleon materials adjust to climate extremes in real time
Every summer, our cities burn energy to keep us cool. The same happens in winter with the increasing demand for heating.
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