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components for quantum devices. In this project we will explore single phononic sources based on silicon nanophotonic and nanophononic metastructures. The researcher will work alongside experienced researchers
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highly efficient on-chip qubit generation. Traditional silicon architectures suffer from limited electro-optic (EO) reconfigurability. Ferroelectrics, particularly barium titanate (BTO), can be a key
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AMBER -Industry partner collaborative funded research position: The postdoctoral research position will be based in the Lally Lab (http://www.lallylab.eu) within the Trinity Centre for Biomedical
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cryogenic germanium and silicon detectors equipped with sensors for the thermal energy of particle interaction. The next generation of the experiment, featuring upgraded detector technology, is currently
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photocathodes for long-term hydrogen production, thermoelectric modules for solar waste heat harvesting, or perovskite-silicon devices for light-driven chemical synthesis. For more details, please view https