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measurements is a critical bottleneck in modern industrial monitoring. This project proposes a monolithic micromachined system based on Silicon Carbide (SiC), strategically leveraging SiC’s superior chemical
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, interconnect considerations, and electronic design (buffers, TIA, etc.). Your work will focus on implementing TIA and buffer circuits in existing advanced semiconductor technologies, such as silicon or III-V. A
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compact InP coupons designed for heterogeneous integration onto silicon-based photonic platforms, enabling scalable co-integration with advanced photonic and electronic circuits. The developed technology
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. These new systems will support better medical imaging, faster computers, and greener high-tech manufacturing. Wafer handling: Silicon wafers are the base material for the fabrication of modern electronic
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electrification and modern power grids. New wide-bandgap semiconductor devices based on silicon carbide (SiC) and gallium nitride (GaN) can switch faster and reduce conversion losses, but their performance is
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candidates into perovskite/silicon tandem cells, device and module fabrication, lifetime testing, and feedback on performance and degradation mechanisms. You will establish a closed-loop workflow from material
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on silicon nitride ribbon torsional resonators coupled directly via magnetic flux to a superconducting qubit. Building on the exciting flux-coupling concept pioneered in my group, you will bring mechanical
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● Membranes for direct lithium extraction ● Green chemical processes for extraction of critical minerals ● Separation of molecular energy carrier materials ● Silicon metal production by molten salt
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, electric mobility, industrial electrification and modern power grids. New wide-bandgap semiconductor devices based on silicon carbide (SiC) and gallium nitride (GaN) can switch faster and reduce conversion
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applicable, your experience of the below (desirable): FPGA prototyping and post-silicon validation. Python programming skills In addition for Research Associate Awareness of the research environment High level