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The Faculty of Engineering at the University of Alberta has successfully built a unique innovation ecosystem that integrates outstanding talent, world-class facilities, and local industry partners, aiming to transform Alberta into a comprehensive service center for advanced laser manufacturing. Called the Canadian Cluster for Laser and Advanced Manufacturing (C:CLAD) — an initiative of the facul...
The UWBGS program will develop and optimize ultra wide bandgap materials and manufacturing processes for the next revolution in the semiconductor electronics field.US military researchers need to develop new integrated circuit substrates, device layers, junctions, and low resistance electrical contacts for the new generation of ultra wide bandgap semiconductors. They found a solution from RTX comp...
Fiber laser, with its simple structure, low cost, high electro-optical conversion efficiency, and good output effect, has been increasing in proportion in industrial lasers year by year. According to statistics, fiber lasers accounted for 52.7% of the industrial laser market in 2020.According to the characteristics of the output beam, fiber lasers can be classified into two categories: continuous ...
The latest research released by TrendForce indicates that in the context of the evolution of artificial intelligence data centers towards large-scale clusters, high-speed optical interconnect technology has become the core key to improving system performance and scalability. The report predicts that the global shipment of 800G and higher rate optical transceivers will reach 24 million units by 202...
Recently, the research team of the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made new progress in evaluating the laser damage resistance and damage mechanism of 532nm thin film polarizers using different laser damage test protocols. The related achievements were published in Optical Materi...