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multicomponent materials based on reducible oxides and metallic or bimetallic nanostructures and thin films. The applicant’s research will focus mainly on so-called model studies of such well-defined materials
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device fabrication; Experience materials fabrication and processing, thin film deposition by printing techniques; Experience in electrical characterization of printed electronic sensors; Experience in
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experience in one or more of the following areas: Optical sensing, photonics, or light-based micro-scale actuation Micro- and nano-fabrication (e.g., lithography, thin-film processing, MEMS, micro-assembly
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Job Description The Centre for Advanced Photovoltaics and Thin-Film Energy Devices (SDU CAPE), part of the Mads Clausen Institute, University of Southern Denmark (SDU), invites applications for a 3
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systems [2]. The objective of the project is the development of high-power hybrid integration concepts and thin film lithium niobate and lithium tantalate photonic integrated circuits to serve as photonic
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fabrication capabilities include; nanoscale 3D printing, thin-film deposition, plasma etching, photolithography, oxidation, and diffusion. Major characterization capabilities include; scanning electron