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structures, targeting improved optical confinement, passivation, and loss control in nanoscale photonic devices. In this project, you will be embedded in the PhotonDelta NGF program. Agentic AI for ALD
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Job description We seek a highly motivated postdoctoral researcher to develop and apply integrated workflows for in situ cryogenic electron tomography (cryo-ET). The project will focus on automating
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central part of the project will be structural analysis by cryo-electron tomography and, where applicable, single-particle cryo-EM. The postdoc will prepare vitrified samples of bacteria undergoing actin
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of researchers and educators. Thus, we are seeking a highly motivated, collaborative, and talented researcher, with a keen eye for strong research designs. Your recommendations will be developed through inquiry
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surface metrology. It is relevant to have experience with analysis techniques such as AFM, WLI, contact-angle, XPS, infrared metrology. You will work in the XUV Optics group at the University of Twente
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will elucidate how silicon disrupts copper wetting and diffusion. A central aspect of this project is the development of a Density Functional Theory (DFT)-accurate machine-learned interatomic potential
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of LCI in steel grain boundaries and the inhibitory role of silicon. Your MD-based approach will elucidate how silicon disrupts copper wetting and diffusion. A central aspect of this project is the
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at TU/e and will work very closely with industrial partners. You will be embedded in the Quantum & Terahertz Systems (QTS) team within the Electro-Optical Communications (ECO) group of the Department
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of heterogeneous integration and advanced device transfer technologies. Information Photonic integrated circuits - or optical chips - have evolved into a mature technology with a broad spectrum of use cases and a
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, robust and cost-effective solutions suitable for industrial deployment remain limited. Next-generation recycling systems will combine multiple sensing techniques (e.g., optical sensing, spectroscopy, and