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Field
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at LPICM on new generation semiconductor, plasma and AI We are looking for a PhD student (fully funded for 3 years) to work on a new project dedicated to ultrawide bandgap semiconductors deposition using
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), the students will be equipped with a good overall understanding of the wafer fabrication process and how the microprocessor devices are created within the semiconductor industry. The topics covered will provide
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semiconductor manufacturing methods with drastically reduced environmental footprint, the consideration of material recycling already at the design stage, and novel device designs and concepts to enhance
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-foot nanofabrication cleanroom, major shared facilities for semiconductor and oxide epitaxy, materials and device characterization, 3D printing for clinical applications and shared labs for research in
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The Process Engineer will be responsible for the day-to-day execution and optimisation of semiconductor packaging processes, contributing to the delivery of high-impact industrial research
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and Applications of Doped Organic Semiconductors, is a consortium composed of eight universities, four research institutes, and four companies from EU countries, the UK, and Switzerland. The mission
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and plasmonic effects. Manufacture of nano(opto)electronic components, particularly based on individual semiconductor nanowires. Experimental characterization of nano-optoelectronic devices
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technology, High performance computing) Advanced Semiconductor Materials (Semiconductor material and device testing, Nitride semiconductor material growth, Nitride semiconductor device processing) Advanced
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FADOS, Fundamentals and Applications of Doped Organic Semiconductors, is a consortium composed of eight universities, four research institutes, and four companies from EU countries, the UK and Switzerland
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, and the relation with the other partners. Therefore, the candidate should have a strong background in the electrical characterization of capacitor structures, point defect identification, semiconductor