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Field
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Storms. The group is also extremely active in the EC Framework Programs and has collaborated with the administrations on competitive projects and contracts. Atmospheric deposition of soluble iron
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(preferably as one document) to Prof. Dr. Benesh Joseph: [email protected] or postal to Freie Universität Berlin Fachbereich Physik Institut für Experimentalphysik AG Joseph Herrn Prof. Dr. Benesh
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Max Planck Institute for Solid State Research, Stuttgart | Stuttgart, Baden W rttemberg | Germany | about 5 hours ago
beam deposition (ESIBD), Ion beam manipulation, Ion trajectory simulations, Low temperature scanning tunnelling microscopy (LT-STM), Electron microscopy (EM). Our offer A full-time position with salary
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recognised. These technologies stabilise vaccines out of cold chain and are easier to administer compared to needle-and-syringe based injection. This project will utilise pharmaceutical methods and principles
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superconducting qubits or quantum error correction, experimental or theoretical, such as quantum error correction codes, low-temperature transport, microwave electronics, nano-fabrication, and quantum control
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detection search for most masses of WIMP dark matter with only 1/20th of its expected full exposure analyzed. SuperCDMS, currently under construction at SNOLAB in Canada, will use novel low-temperature
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A doctoral degree or an equivalent foreign degree, obtained within the last three years prior to the application deadline. Previous experience with microwave technology and low-temperature measurement
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. The successful candidates will be joining the Quantum Photonics with Solids and Atoms group led by Prof. Dr. Hugues de Riedmatten. The group has experience in quantum technologies for quantum networks, including
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of the combined experimental/theoretical international ANR project PuMMAVi (Pumping, Measuring and Modeling Atomic Vibrations in the Electron Microscope) in collaboration with the Humboldt Universität
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the potential of quantum systems involving neutral atoms and their Rydberg states for advancing quantum science and exploring new phenomena in quantum nonlinear optics. Project background Realizing the promise