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Field
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) Preferential factors: experience with the magnetron sputtering physical vapor deposition technique. Workplan and objectives to be achieved: The work plan aims at the development of a biosignal sensor/actuator
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(PTM/PCM)) and to implement it to produce a large-scale device. The main activities are aimed at: - Depositing GeTe films with different stoichiometries using DC magnetron sputtering - Investigating
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experience from PVD synthesis methods, like magnetron sputtering, plasma analysis, as well as thin film characterization techniques like XRD, SEM, TEM, or XPS is beneficial. Fluent English spoken and written
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will use reactive magnetron sputtering to develop Yb³⁺-doped narrow-bandgap sulfide luminescent coatings that turn glass into solar power. Job description In this postdoc research project you will
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Imagine windows that generate electricity. You will use reactive magnetron sputtering to develop Yb³⁺-doped narrow-bandgap sulfide luminescent coatings that turn glass into solar power. Job
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Growing epitaxial thin films and heterostructures by pulsed-laser deposition and magnetron sputtering and using epitaxial strain and interfacial effects to stabilize metastable phases with desired
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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO
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, structure, optical properties, and electrochemical and photoelectrochemical activity. Unique research facilities enable the deposition of thin material layers via magnetron sputtering and their thermal
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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