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-low-power, non-volatile, and scalable computing platforms. The research aims to develop CMOS interface circuits and system architectures that tightly integrate with spintronic devices for applications
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on developing TFLN and TFLT photonic integrated circuit (PIC) platforms for classical and quantum information processing. Our approach involves cavity-based components with electrically controllable cavity
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and expanding section at the Institute of Mechanical and Electrical Engineering (IME). The section conducts internationally recognized research in integrated circuits, spintronics, photonics, and
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on efficiency, power density, and circuit dynamic response. The research will concentrate on creating novel circuit topologies, optimizing electronic components and revolutionizing their integration and packaging
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Job Description If you are an ambitious researcher looking to further your career in photonic integrated circuits and optical computing, we invite you to join us as a Postdoc at DTU Electro in
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at the Institute of Mechanical and Electrical Engineering (IME). The section conducts internationally recognized research in integrated circuits, spintronics, photonics, and neuromorphic computing, and plays a
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algorithms and circuits to enhance imaging quality and speed Creating efficient data acquisition and processing workflows for large datasets of skin nanotexture images Optimizing hardware-software integration
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computing processors. As part of the NQCP Photonics team, you will help develop technologies for integrated quantum photonic processors, with particular focus on single photon emitters, programmable photonic
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quantum computing, including GKP state generation and nonlinear gates. EPIQUE (Horizon Europe): Cluster state generation on photonic integrated chips and its integration into a measurement-based Gaussian