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bulk crystals. Grow epitaxial antiferromagnetic oxide thin films, such as α-Fe2O3, Cr2O3, NiO, using magnetron sputtering system. Build and measure cavity coupling with antiferromagnetic magnon modes in
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plasma-material interactions, including models for sputtering, impurity transport, and sheath physics. Programming experience in Python, MATLAB, Fortran, C++ and other science relevant languages. Ability
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, including thin-film deposition (e.g., magnetron sputtering), electron-beam or optical lithography, and dry/wet etching Familiarity with microwave resonator design, characterization, and RF/microwave
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 19 days ago
of simple ices and/or grains and released into the gas phase by sublimation, sputtering, etc. This assumption has not been experimentally tested in great detail for sublimated gases; however laboratory
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cleanroom facility. Deep expertise in lithography, E-beam evaporation, sputtering, and dry/wet etching is strictly required. Optical Bench Competency: Demonstrated success in designing, constructing, and
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fabrication, including mask design, metal sputtering, laser or e-beam lithography, etching, and device integration Familiarity with thin-film materials (e.g., oxides, dielectrics, metals) and their integration
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growth of thin films using CVD and related technique is preferred. Other knowledge of pulsed-laser deposition, sputtering deposition, photo- and electron beam lithography, and transport and
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following areas: Transition-edge sensors (TESs) or kinetic inductance detectors (KIDs) Cleanroom microfabrication processes, including: Thin-film deposition (e.g., magnetron sputtering) Electron-beam
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(KIDs) Experience with cleanroom microfabrication processes, including thin-film deposition (e.g., magnetron sputtering), electron-beam or optical lithography, and dry/wet etching Familiarity with