A discovery by physicists is unlocking a new understanding of magnetism and electronic interactions in cutting-edge materials, potentially revolutionizing technology fields such as quantum computing ...
Magnetic levitation systems harness the unique properties of high-temperature superconductors and permanent magnets to achieve frictionless, contactless motion. The core principle underpinning these ...
Morning Overview on MSN
MIT finds superconductivity and magnetism can co-exist in one material
Superconductivity and magnetism have long been treated as rivals in condensed matter physics, one thriving on perfect ...
(Left) In a magnetic field of moderate magnitude, magnetic flux lines penetrate in the form of defects accompanied by vortices of superconducting currents. (Center) Conceptual diagram of the ...
The Brighterside of News on MSN
Scientists bend magnetic fields around real-world objects to create 'invisibility cloaks'
For nearly 20 years, physicists and engineers have chased the idea of invisibility. Early efforts focused on hiding objects from light using so-called metamaterials with extreme and often unrealistic ...
The main researchers working on LK99-like room temperature and room pressure superconductors are in China and South Korea. There have been reports that the China researchers have successfully ...
Researchers have demonstrated the ability to grow high-quality thin films of a recently discovered superconductor material called potassium tantalate (KTaO 3). The researchers also discovered that the ...
Superconductors are used for a wide range of industrial applications, such as electric motors, flywheel energy systems, and magnetic levitation. Researchers from the Shibaura Institute of Technology, ...
EDITOR'S NOTE: The paper this report was based on has been retracted because eight of its 11 authors no longer have confidence in the data it contained. On Wednesday, a paper was released by Nature ...
LK99 is the proposed room temperature superconductor and IF it is confirmed as a superconductor then it will likely be a new class of superconductor. It is different than the previously known type 1 ...
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