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Field
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Science (MSD) divisions. Together, the team brings expertise in: Superconducting detector arrays Thin-film materials development Nanofabrication Cryogenic instrumentation Quantum communications Solid-state
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, Chemistry, or a related field Strong background in OLEDs, organic electronics, optoelectronics, or photonics Hands-on experience with fabrication and characterization of thin-film optoelectronic devices
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, and thin-film deposition techniques. Knowledge of semiconductor physics and a track record of working with next-generation novel materials for light-harvesting is essential. Applicants should be highly
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, such as graphene-like materials, has brought a fresh stimulus for spintronics. This project aims to understand, observe, and realize novel charge, spin, and orbital phenomena using thin film
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fabrication and characterization of thin-film optoelectronic devices Experience with NIR-emitting devices and/or plasmonics/nanophotonics is highly desirable Strong interest in interdisciplinary research and
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processes, plasma polymerization, thin-film deposition, surface functionalization, or materials characterization will be highly valued. Experience with magnetic nanoparticles and techniques such as XPS, FTIR
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. The project includes measurements of microstructured thin-film YIG devices. In particular, the researcher will perform microwave measurements in a dilution refrigerator to characterize magnons in
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project on agentic AI research assistance. ALD for next-generation energy storage technologies: Design and engineer thin films and interfaces of interest in next-generation lithium- and sodium-ion batteries
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, thin-film deposition, and etch. Integration of heterogeneous material stacks supplied by collaborators into working device structures. Electrical and magnetic characterization, including cryogenic
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science, surface science, applied physics, physical chemistry, nanotechnology, mechanical engineering, or a related field. You have experience with experimental research on surfaces, interfaces, thin films