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Field
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analysis both locally and as part of the CMS computing Grid. The position offers exciting possibilities in the analysis of the new 13.6 TeV collision data towards quantum tomography of top quarks
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involves the use of quantum chemistry, machine learning, and genetic algorithms to search for new homogeneous chemical catalysts. Who are we looking for? We are looking for candidates within the field
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of Quantum Materials (IMPRS-CPQM) is a joint PhD programme between the Max Planck Institute for Chemical Physics of Solids (MPI CPfS) in Dresden, Germany, the Technische Universität Dresden (TU Dresden), and
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postgraduate education in areas such as Information Processing Technologies, including Quantum Information and Computation, Optoeletronics, Physical Layer Security and Information Theory, Cybersecurity and
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next-generation nano-optoelectronic devices with enhanced or entirely new properties. We welcome candidates with a strong background in condensed-matter physics and/or quantum nanophotonics, who
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lectures which are offered by the Physics Department of RPTU within the Master of Science in Advanced Quantum Physics programme: https://physik.rptu.de/quantum-master/ . The detailed programme of
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I supervise a wide range of PhD projects on experimental research into the electronic properties of novel quantum materials including topological insulators, graphene, and other atomically thin two
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that the effects of quantum mechanics become noticeable, making it possible to gain full control over the molecules. These findings are being used in quantum technology applications and in advanced physics research
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My research focuses on the theory of strongly correlated phenomena in cold atomic gases and electron systems. Particular topics of interest include low-dimensional quantum systems, superconductivity
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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