| | | | | | | | A new approach to generate far-ultraviolet C (far-UVC) taps field emission from a nanostructured cathode and electron excitation of a phosphor layer rather than using a conventional gas-discharge lamp or semiconductor light-emitting diode (LED) architecture. |
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| | Sponsored | | Boost photon capture and improve alignment tolerance in data center, HPC, and AI optical interconnects with our InGaAs APDs. The APX-NG000XAPD is designed for high-performance detection and features up to 500μm active diameter, 1,000 to 1,700nm spectral range, high gain (up to 25), low noise, and fast response times with a typical bias voltage of 55V. |
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| | | | | | This episode of Following the Photons: A Photonics Podcast features Part One of our interview with Garrett Cole, an associate professor at the University of Arizona's Wyant College of Optical Sciences. |
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| | | | | | AI-assisted nomography is a valuable tool for engineers because it helps show relationships in a different way, recognizes possibilities that might otherwise be overlooked, and opens up engineering and innovation avenues to explore. |
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| | | | | | Celebrate innovation in optics, photonics, and quantum by entering the Laser Focus World Innovators Awards—the final submission deadline is September 29th. |
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| | | | | | Manufacturing monolithically at complementary metal-oxide semiconductor (CMOS) scale using established foundry processes means silicon photonics can now compete on cost and volume, as well as performance. |
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| | | | Sponsored | | This podcast explores how precision motion, intelligent alignment, and automation technologies are enabling that transition by transforming photonics manufacturing from a serial, labor-intensive process into a highly automated, high-throughput production environment, making large-scale deployment of optical interconnects both practical and economically... |
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