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, at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research key SiC on insulator (SiCOI) devices, i.e. optical frequency combs(OFCs) and modulators, and
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No. 101227010 , at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research novel noise characterization techniques for SiC optical frequency combs targeting
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-Curie Grant Agreement No. 101227010, at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research novel noise characterization techniques for SiC optical
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, at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research key SiC on insulator (SiCOI) devices i.e. arrayed waveguide gratings (AWGs) and optical
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optics. The PhD student will participate in an international team, consisting of 15 PhD students at 5 universities and one company. The project has partners from five different EU countries. All, 15 PhD
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, at DTU Electro, the Technical University of Denmark, we are seeking a candidate for a PhD position to research generation of optical quantum states, specifically photon pairs and entangled photon states in
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PhD Scholarships in Piezophotoacoustic Technology for Minimally Invasive Endoscopy - DTU Health Tech
piezoelectric materials and transducers combined with photoacoustic technology. The technology will be based on single optical fibers and bundles of fibers, where the acoustic generation is mainly photoacoustic
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exploiting piezoelectric materials and transducers combined with photoacoustic technology. The technology will be based on single optical fibers and bundles of fibers, where the acoustic generation is mainly
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materials exhibits prompt changes in magnetic, electronic, or optical properties upon stimuli and are promising candidates for applications in memory devices addressable by light, optoelectronics, and sensors
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project position is the design and numerical simulation of quantum-dot-based single-photon sources using advanced optical simulation tools. The objective of the PhD2 project is the microfabrication