IEEE Spectrum on MSN
Metalenses improve microscopic 3D printing precision
Currently the most precise method for 3D printing complex microscopic features is two-photon lithography. The technique uses ...
Researchers at Lawrence Livermore National Laboratory (LLNL) have optimized and 3D-printed helix structures as optical ...
Explore the success story of Nanoscribe: a leader in nano-3D printing with rising industrial demand and 400 systems sold to ...
Researchers at Lawrence Livermore National Laboratory (LLNL) have optimized and 3D-printed helix structures as optical ...
Researchers have developed a new 3D printing method called blurred tomography that can rapidly produce microlenses with commercial-level optical quality. The new method may make it easier and faster ...
The demand for disposable miniature imaging platforms (DMIPs) is growing rapidly. Used for commercial, scientific, medical, and educational purposes, DMIPs have numerous applications but can be ...
Imagine a portable 3D printer you could hold in the palm of your hand. The tiny device could enable a user to rapidly create customized, low-cost objects on the go, like a fastener to repair a wobbly ...
3D printing of silica glasses and silica optical fiber preforms has recently been proved experimentally. One challenge of 3D printing silica optical fibers performance is how to extend the recent ...
Researchers have optimized and 3D-printed helix structures as optical materials for Terahertz (THz) frequencies, a potential ...
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