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Are you fascinated by atomic-scale control of materials for future semiconductor and energy technologies? We are looking for three ambitious postdocs to work on advanced atomic layer processing
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explore new opportunities in semiconductor quantum technology and work to push the boundaries of quantum control in semiconductor qubits. The Veldhorst group is a dynamic group studying timely topics. Near
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high-performance applications. The project brings together materials science, powder technology, additive manufacturing, and data science. Silicon carbide is widely used in demanding thermal, structural
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advancing the field of semiconductor quantum technology. Near-term projects include multi-qubit operation, entanglement generation between qubit registers, and multi-quantum wells for higher dimensional
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our place as an internationally leading center for smart production, processes, and devices in five domains: Health Technology, Maintenance, Smart Regions, Smart Industry, and Sustainable Resources. Our
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Division (TEC-ED) in the Electrical Department (TEC-E). Their main area of responsibility is to provide direct and indirect engineering support to ESA projects and European industry in the fields of EEE
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, wafer processing, adhesion, or semiconductor-related materials. You are familiar with one or more relevant characterization techniques, such as AFM, WLI, contact-angle measurements, XPS, FTIR, infrared
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-efficient wideband signal processing and programmability to accommodate different use cases are becoming essential. Increasingly, overall system performance is no longer limited solely by the front-end, but
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electronic solutions for future AI-driven optical interconnects. Design, implement and characterize the most promising topology for driver and TIA in advanced semiconductor technology
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engineering, substrate recovery strategies, manufacturing process development and process integration. The ultimate goal is to establish scalable and sustainable manufacturing methodologies that reduce material