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Field
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nanoelectromechanical systems (MEMS/NEMS). The successful candidate will conduct advanced research in the design, modeling, fabrication, and characterization of MEMS/NEMS devices, with an emphasis on electromechanical
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prior expertise in electrical characterization of semiconductor electronic devices, ideally in reliability analysis. This role encompasses the advanced electrical characterization and reliability study of
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chain: growth of ferroelectric thin films and 2DEGs (PLD, sputtering), nanofabrication in a cleanroom environment (UV and/or e-beam lithography), and electrical characterization (transport and
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High Energy Physics Division, the successful candidate will contribute to the design, fabrication, and characterization of superconducting devices based on microstrip-coupled TES technology, with
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, dielectric device preparation, and electrical characterization. The work emphasizes understanding structure-processing-property relationships in polymer-based dielectric materials and translating
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, thin-film fabrication, dielectric device preparation, and electrical characterization. The work emphasizes understanding structure–processing–property relationships in polymer-based dielectric materials
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. Empa is a research institution of the ETH Domain. The Laboratory for Biointerfaces performs material-related research and focuses on understanding, characterizing and steering interactions
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, using Schottky diodes and metal–oxide–semiconductor (MOS) capacitors. The project focuses on the fabrication, electrical, and optical characterization of SiC-based devices, with emphasis on: • Fabrication
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discovery of novel materials. In addition, the characterization of novel materials (primarily mixed valence and/or crystal electric field split, rare-earth-based, intermetallics) as a function of
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batteries have enabled the development of portable electronics and electric vehicles, due to their great gravimetric and volumetric energy densities. The tremendous success of these systems and the