Due to the nature of light, a traditional optical microscope can be employed to attain a maximum magnification of around 800–1000x. For further magnification, scanning electron microscopes (SEMs) can ...
The figure (left) shows the magnetic state above the surface by means of its (simplified) wave function (green wavy line), which penetrates beneath the graphene (dark grey small spheres) to the ...
An international research team has succeeded in controlling the chirality of individual molecules through structural isomerization. The team also succeeded in synthesizing highly reactive diradicals ...
Atomic force microscopy (AFM) is a type of scanning probe microscopy that is used to see and measure surface topography, conduct force measurements or manipulate a sample’s surface. It can have nearly ...
A scanning probe microscope comes in a wide variety of flavors, they all produce a set of data points containing the measurements at each location. Usually these data points form a regular 2D grid, ...
A scanning probe microscope comes in a wide variety of flavors, they all produce a set of data points containing the measurements at each location. Usually these data points form a regular 2D grid, ...
Researchers have developed a new software package for analyzing images from electron and scanning probe microscopy. The package, AtomAI, uses deep learning. This is a type of machine learning that ...
Participants slide a magnetic probe across a flat flexible magnet to discover a bumpy pattern. While the bumps are undetectable to sight and touch, the push and pull of the probe across the magnet are ...
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A look beneath the surface: Research team makes hidden structural and magnetic properties visible. (Nanowerk News) Scientists use scanning tunnelling microscopy to understand how a material’s ...