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Field
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field of topotactic reduction of nickelate thin films, a novel research direction in condensed matter physics. It will be fully funded within the framework of the ANR TAME project. The project concerns
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films through innovative deposition processes and high-throughput materials screening. The opportunityContribute to groundbreaking research on accelerated thin-film and process development for emerging
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-science or applied physics profile with hands-on experience in thin-film processing, molecular doping, and advanced characterization. We are looking for someone who can connect processing, microstructure
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that will help solving outstanding questions at the forefront of (photo)chemistry by implementing automated spectroscopy workflows for molecular systems and thin films in combination with AI-driven process
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defect formation in halide perovskite thin-films. Halide perovskites are a class of low-cost, high-quality semiconductor materials which have the potential to enter and make significant impact in
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Practical experience with several relevant cleanroom techniques, such as photolithography, thin-film deposition, plasma or wet etching, metallization, wafer bonding, or thin-film patterning Experience in
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electron-beam lithography, plasma etching, thin-film and membrane processing, and nanoscale metrology. The researcher will have access to advanced cleanroom and characterization infrastructure at Tyndall and
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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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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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. 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