The approach uses 3D printing to produce WC-Co cemented carbides - ultra-hard materials used in cutting and construction ...
Applied physicists in the Harvard John A. Paulson School of Engineering and Applied Sciences (SEAS) have demonstrated a new ...
The static nature of conventional phonon polaritonic crystals (PoCs) limits their use in adaptive nanophotonics. Now, ...
Polaritons—hybrid light-matter particles—allow light to be squeezed into deep subwavelength scales, holding great promise for ultra-compact photonic ...
Tuberculosis bacteria survive by hiding in our immune cells. In her PhD research, biologist Salomé Muñoz Sánchez explores how ...
A hybrid graphene and molybdenum trioxide crystal allows real time electrical tuning of Bloch modes and light emission, ...
This research highlights the use of O-PTIR to determine the minimum detectable thickness of PA6 and PET films, crucial for ...
The superconducting gap sets the basic energy scale that allows electricity to flow without resistance in a superconductor. In high‑temperature cuprates, the paired electrons (Cooper pairs) are mostly ...
Tungsten carbide–cobalt (WC–Co) is prized for its hardness, but that same property makes it unusually difficult to shape. The ...
Researchers from Regensburg and Birmingham have overcome a fundamental limitation of optical microscopy. With the help of ...
A new imaging breakthrough combines ultrasound and light-based techniques to generate vivid 3D images that show both tissue ...