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and quantum cybersecurity applications? Can we scale-up multiphoton platforms by using integrated optics, quantum-dot single-photon sources and customized two-dimensional nonlinear materials
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of macrosopic quantum coherence in levitated solidstate platforms. Our Team is part of the Quantum Optics, Quantum Nanophysics and Quantum Information group of the Faculty of Physics. We are member of the Vienna
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orientation with compositional design, the project will reveal how directional control over framework domains influences charge transport, optical response, and catalytic performance. Applications include
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and anti-icing properties Characterize optical and surface properties and link them to functional performance Collaborate closely with consortium partners, especially those working on nanoimprint
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part of the Quantum Optics, Quantum Nanophysics, and Quantum Information Group – and at the Faculty of Mathematics. Furthermore, we are a member of the Vienna Center for Quantum Science and Technology