The nonrepeating Smith hat tile created twisting, pinwheel-like light patterns that ordinary quasicrystals do not produce. Its unusual effect comes from combining long-range order with a lack of ...
Researchers at the George W. Woodruff School of Mechanical Engineering have developed a new approach to nanoscale 3D printing ...
Recent scientific advancements have opened new opportunities for the close observation of physical phenomena. Researchers at University of Cambridge and University of Newcastle recently introduced a ...
Aperiodic Einstein tile nanostructure produces chiral diffraction pattern under laser light, reported in Nature ...
Scientists at the Institute of Industrial Science (IIS) at the University of Tokyo in ...
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 ...
In a significant collaboration, high-quality powder diffraction data is being collected, enhancing the understanding of APIs ...
When a laser beam is incident on many small objects such as lycopodium powder, the resulting diffraction pattern is similar to the diffraction pattern of a small circular aperture (Airy's disk pattern ...
We’ve seen just about every possible way to make a clock here at Hackaday over the years. So it’s rare to have a first, but here we are with [Twisted & Tinned], who’s made a novel clock with a ...