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My work focuses on experimental research in quantum sensing and quantum microscopy using the nitrogen-vacancy (NV) centre in diamond. In particular, we are interested in applying quantum sensing
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My research explores ways to determine the atomic architecture of materials so we can understand and manipulate a material’s behaviour. At the atomic level, amazing and beautiful quantum phenomena
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learning potentials) and analytical calculation methods (quantum dynamics) to develop robust methods for predicting and interpreting observables from XFEL experiments. Methodologies developed be applicable
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photonics, nonlinear and quantum optics, guidance systems, artificial intelligence, sensor technologies, imaging, sensing and display – to name a few. TISTEF collaborates with many national and international
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challenges, such as those in the quantum world. At the same time, we prepare our students for careers both within and outside the scientific field. Currently, more than 1,300 colleagues contribute to research
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important aspects of optics and photonics. The five KSOP research areas are Photonic Materials and Devices, Quantum Optics & Spectroscopy, Biomedical Photonics, Optical Systems, and Solar Energy. All research
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work in astronomy and geodesy. Later on, around 1930, the close and fruitful collaboration between mathematicians and physicists in Göttingen led to the mathematical theory of quantum mechanics
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towards the global challenges of the future. Strategic and interdisciplinary research themes are contributing to improvements in the areas of green energy, quantum technologies, data science as
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enrolled in our research-oriented PhD/doctoral programme. In our optics / photonics and quantum technology programme, we offer: high-end research and education in a world-class scientific environment with
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with commonly used tools such as OPAL-RT/RTDS, PSS/E, PSCAD, EXata. • Knowledge of cybersecurity of industrial control systems and/or quantum computing. Additional Information: Candidates must have