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well as to prepare new devices and methods of quantum information processing. Our goal is to achieve JoFETs by utilizing hybrid devices based on silicon and high-quality superconducting silicides. Remarkably
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algebras, tensor categories, lattice models of statistical physics, conformally invariant random processes, formalization of mathematics (preferably in Lean). The working language of the group is English
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closely the development of quantum technology and modern superconducting device engineering. You will gain experience on high-frequency operation and measurement of superconducting quantum circuits, which
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fabrication processes and equipment for micro- and nanostructures. The facilities cover a comprehensive range of equipment, including atomic layer deposition devices, electron microscopy, x-ray scattering
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we warmly encourage qualified candidates from all backgrounds to join our community. The Process Systems Engineering research group in the Department of Chemical and Metallurgical Engineering is now
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of renewable resources. BIO2 aims to contribute to the development of novel solutions to move towards sustainable primary production and processing systems that can produce materials with fewer inputs, less
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processing. The measurements are carried out at deep cryogenic temperatures in dilution refrigerators. Notably, we have demonstrated quantum entanglement between two micromechanical oscillators realized as
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in one of the following: computational social science, ubiquitous computing, data science, or human-computer interaction. Programming skills needed to do data analysis (we mainly use Python) You can be