Optical vector analysis has emerged as a critical tool for characterising optical devices, enabling simultaneous measurement of amplitude and phase responses over wide bandwidths. This technique is ...
A new microchip-sized device could dramatically accelerate the future of quantum computing. It controls laser frequencies ...
The lithium niobate thin-film modulator was designed to achieve a modulation frequency of 350 kHz within the 0–2π phase range, further realizing high speed control of optical field coherence.
This study demonstrates a compact optical modulation platform that enables real-time, high-resolution spectroscopy using sub-MHz interleaved combs generated via chip-scale acousto-optic phase ...
A tiny device can control laser light very precisely while using much less power, making it possible to build bigger and ...
This modulator offers unique performance and outperforms all other modulation solutions available on the market: This Modulator, NIR-MPZ-LN-20, is the most advanced large bandwidth Near-Infra-Red ...
Over the past decades, engineers have introduced numerous technologies that rely on light and its underlying characteristics. These include photonic and quantum systems that could advance imaging, ...
Researchers have made a major advance in quantum computing with a new device that is nearly 100 times smaller than the diameter of a human hair. Subscribe to our newsletter for the latest sci-tech ...
In the rapidly advancing field of microelectronics manufacturing, the demand for higher throughput and precision in via drilling has never been greater. This translates into a market demand for more ...
Radio frequency (RF) refers to the part of the electromagnetic spectrum where electromagnetic waves can be generated by alternating current fed to an antenna. It spans from around 3 kHz to 300 GHz. RF ...
BANGALORE, India, April 4, 2025 /PRNewswire/ -- Thin Film Lithium Niobate (TFLN) Modulator Market is Segmented by Type (Thin Film Lithium Niobate Phase Modulator, Thin Film Lithium Niobate Intensity ...