The rapidly growing field of research on chiral phonons is giving researchers new insights into the fundamental behaviors and structures of materials. The chirality of phonons could pave the way for ...
Scientists have uncovered how tiny magnetic waves can produce electric signals inside materials, potentially transforming computing efficiency.
Researchers have found a way to use material defects – long regarded as a hindrance in electronics – as a quantum advantage.
Understanding the properties of different materials is an important step in material design. X-ray absorption spectroscopy ...
Astrophel Aerospace is creating scalable cryogenic hardware for launch systems, LNG, hydrogen fueling, and high-pressure gas ...
“We Made the World’s Best Material” – How a Diamond Substitute Could Revolutionize Quantum Computing
Strontium titanate’s remarkable ability to perform at extremely low temperatures makes it a key material for next-generation ...
Gabriella Khalil, the creative director of ventures such as hotel Palm Heights in Grand Cayman and Manhattan’s creative work ...
Compared to traditional rubber bearings, the elastomeric material used for the RiverTough bearing demonstrates significantly ...
A new theoretical study led by University of Delaware engineers reveals that magnons, a type of magnetic spin wave, can produce detectable electric signals. Pictured, Matt Doty, professor in the ...
The first map of magnetic fields in a planetary formation disk has been created, revealing how invisible forces shape the ...
Material choices play a critical role in the design and performance of application specific integrated circuits across ...
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