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these articles, an additional 5 points will be awarded, setting the maximum for this section at 15 points. • Advanced technical knowledge: Experience in the use of solution-based thin-film fabrication
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. Paolo Guisto (MPIKG, https://www.mpikg.mpg.de/2d-covalent-thin-films-for-energy-storage ). Co-supervisors from secondments: Dr. N. Krans (Protochips, https://www.protochips.com/ ). Prof. M. Pumera (VSB
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have: Hands-on experience in micro/nanofabrication, preferably including lithography, thin-film deposition, dry/wet etching, lift-off, release processes, or MEMS/NEMS process integration. Demonstrated
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optical and spectroscopic characterization techniques such as AFM, SEM and TEM as well as XPS to characterize the deposited metallic thin film in depth. Investigating the developed electrodeposition
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for the ELEKTRA project. In this SME-Innovative project, electrochromic films are being developed as a smart and energy-efficient retrofit solution for existing buildings. Further information: https
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crystal / thin film scattering measurements, exploiting developments in artificial intelligence and machine learning. We also invite candidates with interests in beamline automation and autonomy
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promise advanced functionality for applications such as quantum information processing and precision sensing. Thin film lithium niobate (TFLN) is a maturing photonics platform that can integrate frequency
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force microscopy, magnetic and dielectric characterization, oxide thin-film growth, and close collaboration with leading theoretical groups. We pursue fundamental experimental research while maintaining a
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microscopy and scanning electron microscopy (SEM) Plasma etch and thin film deposition systems Wet processing systems (chemical benches/hoods) Experience supporting shared user facilities or research
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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 nanoparticles. Nuclear