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international project partners, embedded in an ERC-funded project. For deeper insights, please have a look at our institute website: https://www.fz-juelich.de/en/pgi/pgi-7 and the research group in which
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Technologies (quantum communication, computing, sensing, nanoelectronics, emerging devices, energy-efficient systems) Cybersecurity and Cyber Physical Systems (hardware, software, and network security; AI
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the positioning and routing phases of nanoelectronic components. Functions to be developed: Assist in the study and implementation of mathematical and combinatorial optimization techniques. Cooperate in
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. · Advanced Materials, Nanoelectronics, and Emerging Devices – 2D materials, spintronics, MEMS/NEMS, and flexible electronics. The successful candidate will have the opportunity to build upon existing
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in opto/nanoelectronics. However, this device downscaling also brought technological issues. Among them, one of the most detrimental effects is the self-heating due to the thermalization of hot
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this opening! Use the following URL: https://jobs.icfo.eu/?detail=896
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Interest in issues about nanoelectronics and surface science Previous knowledge in lithography, surface characterization, or electrical characterization is desirable High degree of motivation and reliability
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-heating effects in advanced nanoelectronic technologies Where to apply Website https://www.unimore.it/ Requirements Additional Information Eligibility criteria Eligible destination country/ies for fellows
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to evaluate approaches against performance metrics such as energy efficiency, inference accuracy and computational latency. The successful candidate will join the Nanoelectronics research group (NANO) and also
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methods for measuring mechanical strain in real-world semiconductor devices. Geometric complexity and the importance of strain in state-of-the-art nanoelectronics continue to increase, and this project is