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processing, while building skills in organic and physical chemistry, material science and advanced analytical techniques (e.g. state-of-the-art liquid and solid-state NMR techniques, X-ray diffraction
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access to complementary expertise and device know-how. We aim to cool mechanical degrees of freedom deeply into their quantum ground state and observe sideband asymmetry, using dilution refrigerator with
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of the mechanical quantum states. So far, true quantum states in such systems have been reached in only in physically adjacent components. We aim to extend this to remotely connected electromechanical systems capable
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actively work to ensure our community’s diversity and inclusiveness. This is why we warmly encourage qualified candidates from all backgrounds to join our community. At the Department of Applied Physics, our
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strong track record of research in III-V or III-Nitride semiconductors and excellent understanding of semiconductor device physics Hands-on experience and solid understanding of epitaxial processes