| | | | | | | | The shift beyond silicon photonics is an expansion of the photonic materials toolkit. While silicon remains valuable for electronic-photonic integration and certain passive functions, scalable quantum photonic systems demand materials engineered specifically for quantum performance. |
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| | Sponsored | | Cloud computing, 5G, video streaming, and generative AI are accelerating growth in CPO and Silicon Photonics. To meet rising demand for high power tunable lasers for high loss device testing, Santec delivers up to +25 dBm optical output power. The TSL 570 Type U is the ideal tunable light source from R&D to mass production. |
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| | | | | | Low thermal expansion materials remove thermal distortion at the source, which simplifies system design and enhances reliability. |
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| | | | | | In this episode: Robots learn in real time via new photonic computing chips, the latest photonics business news, and a quantum switch facilitates quantum state control. |
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| | Sponsored | | Alluxa offers and manufactures high-performance optical thin films. All of Alluxa's thin-film optical filters and mirrors are hard-coated using a proprietary plasma deposition process on equipment that was designed and built by our team. This allows us to repeatably produce the same high-performance optical thin films in all of our coating chambers. |
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| | | | | | In this issue, we present articles on an ultrafast light switch for optical data components, the future of optical networks, scalable quantum systems, and much more. Enjoy! |
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| | | | Sponsored | | Join our upcoming webinar to hear directly from a researcher who demonstrated how specific use of orbital angular momentum (OAM) modes of light increase optical fiber transmission capacity. Dr. Shaghayegh Yaraghi, postdoctoral researcher from the University of Central Florida, will deliver this session describing how a novel Fabry-Pérot cavity incorporates a holographic mask and demonstrates resonance-free operation by driving an OAM ladder. |
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