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Field
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to precisely thin the otic capsule through the ear canal, enabling high-resolution imaging of the cochlea without open surgery or manipulation of the eardrum. Preliminary studies in porcine temporal bones
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on metal/semiconductor surfaces and interfaces is focused on surface structures; metal thin films, and organic crystalline layers, using experimental techniques such as scanning tunneling microscopy and
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advances in methodologies with direct applications in public health and biosecurity. For example, how shall we allocate sparse resources to detect pathogens early, characterize their growth and key
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particularly exciting because it combines new advances in methodologies with direct applications in public health and biosecurity. For example, how shall we allocate sparse resources to detect pathogens early
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. Sparse sensing, optimization, or Bayesian experimental design. Machine learning for imaging. Synchrotron experiment experience. Semiconductor devices or metrology. We offer We offer a fully funded
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thin film deposition. Must demonstrate self-motivation and strong teamwork skills. Some travel is required to participate with collaborators’ facilities. The role will involve grant proposal development
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physics. In materials physics, the core research fields are the physics of nanomaterials and thin films, quantum matter and quantum technologies, light-matter interaction and physics and chemistry of
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, and second harmonic generation (SHG) to investigate magnetic, electronic, resistive and ferroic functionality in thin film materials and nanodevices. The work will combine fundamental studies
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topological thin film materials. The successful candidate will lead in thin film synthesis, device fabrication, and transport measurement of devices involving superconductors interfaced with graphene
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perovskite precursor ink formulations and nucleation/crystallization processes Have significant experience performing thin-film and solution metrology and analyzing data from: XRD, SEM, NMR, FTIR, UV-vis, and