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Laser Doping: A Faster Way to Engineer SemiconductorsUsing lasers to dope silicon is faster, cleaner, and more precise than traditional methods. It’s a glimpse into how high-tech manufacturing keeps pushing the limits of what chips can do.
Photonics Breakthroughs 2024: Narrow-Linewidth Lasers in the Visible and Near-Infrared - IEEE Xplore
Low-noise lasers are of particular importance in this spectral range, as they are essential for optical clocks. Here, we will review recent progress in narrow-linewidth lasers at shorter wavelengths, ...
Utilizing IR PiFM, researchers can accurately analyze contaminants and defects under 20 nm, enhancing surface ...
Advanced ultrafast laser techniques achieve sub-10nm nanofabrication for semiconductors. Comprehensive review of near-field ...
The dependence of the semiconductor laser wavelength on the pump current is a well-known phenomenon, which is generally attributed to a change in the refractive index of the active layer due to ...
A fully in-situ, optoelectronic mid-infrared filter using silicon metasurfaces and thermo-optic tunability can achieve ...
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