(PhysOrg.com) -- Nearly 100 years ago, in 1912, a paper by Max von Laue made it possible to use x-rays to study the structure of different crystalline substances. He won a Nobel Prize in 1914 for his ...
Electron diffraction is a powerful analytical technique used to study the atomic structure of materials. It involves the interaction of a beam of electrons with a crystalline sample, resulting in a ...
Diffraction theory describes how wave fields—acoustic, electromagnetic or quantum—interact with obstacles and apertures, producing characteristic patterns of scattering and interference. At its heart ...
Researchers at ETH Zurich have developed a method for the production of wavy surfaces with nanometer precision. In the future this method could be used, for instance, to make optical components for ...
Researchers combine probabilistic X-ray diffraction analysis with LLM-based chemical reasoning to rank competing phase ...
Scientists at the Institute of Industrial Science (IIS) at the University of Tokyo in Japan have come across a new twist in the decades-old mathematical puzzle, the Einstein problem, after an optical ...
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