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areas: quantum field theories and effective quantum field theories, lattice QCD, non-equilibrium evolution in quantum field theory, finite temperature QCD, phenomenology of XYZ, higher order perturbative
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Researcher (R1) Application Deadline 21 Aug 2026 - 21:59 (UTC) Country Switzerland Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a
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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Contribute to quantum technologies by developing
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! Job Description Quantum computers and quantum sensors require electronic interfaces that can operate reliably at cryogenic temperatures. However, conventional room-temperature electronics rely
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description How can spin wave show quantum properties and how are they useful
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for examining and imaging the magnetic fields from exotic conducting materials (e.g. superconductors, topological insulators), performing high bandwidth and high sensitivity vector magnetic sensing and developing
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-performance computing, within an active, collaborative research group. You will be based in the group of Prof. Linn Leppert in the School of Metallurgy and Materials at the University of Birmingham. Background
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University of Girona (UdG) - Institute of Computational Chemistry and Catalysis (IQCC) | Spain | 3 months ago
environments and high-performance computing Biocatalysis, enzyme engineering, or computational enzyme design. How to apply. Applications should be addressed to Dr. Marc Garcia-Borràs ([email protected] ) and
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programme Wireless Communications; as per January 1, 2027, or as soon as possible thereafter. In electronic engineering, Aalborg University is known worldwide for its high academic quality and societal impact
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economy. Thermal interfaces at cryogenic conditions: Many advanced technologies — like quantum computers, powerful microscopes, and chip-making tools — require extreme cooling. However, the optimal design