When something draws us in like a magnet, we take a closer look. When magnets draw in physicists, they take a quantum look. Scientists from Osaka Metropolitan University and the University of Tokyo ...
"It passes through our bodies, our cells and every living organism on the planet, yet we know surprisingly little about ...
A new method enables researchers to analyse magnetic nanostructures with a high resolution. The new method achieves a resolution of around 70 nanometers, whereas normal light microscopes have a ...
Earth’s magnetic field plays a crucial role in protecting life from radiation generated by the solar wind and cosmic rays. This invisible shield draws most of its power from a juggernaut “geodynamo,” ...
The observation was conducted using the newly developed Magnetic-field-free Atomic-Resolution STEM (MARS) (1). This team had already succeeded in observing the electric field inside atoms for the ...
Boston College and UC Santa Barbara researchers discovered a dramatic re-arrangement of magnetic domains with thermal cycling in a Mott insulator Chestnut Hill, Mass. (11/16/2021) – Experiments led by ...
Magnetic fields are all around us. We can’t really feel or see them ourselves, per se, but we can map them with the right hardware, like this device built by [edosari50]. The build uses an ESP32 ...
The joint development team of Professor Shibata (the University of Tokyo), JEOL Ltd. and Monash University succeeded in directly observing an atomic magnetic field, the origin of magnets (magnetic ...
Scientists have observed atomic magnetic fields, the origin of magnetic forces, for the first time using an innovative Magnetic-field-free Atomic-Resolution STEM they developed. The joint development ...
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