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Field
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surfaces. This work builds on our ongoing, long-term research program centered on spin-split electronic structures of quantum wells—an area that has attracted significant attention in the context
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background in the application and development of quantum mechanical methods to catalytic and electrocatalytic systems and kinetic modeling. More information about our research group can be found at our website
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investigated in detail, which promises unique new insights into the quantum physics of atomic nuclei as well as new approaches for the construction of a high-precision ‘nuclear clock’. Within this project
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correlated electron systems, quantum magnetism, and emergent non-equilibrium phases of matter, quantum information and related fields are encouraged to apply. The successful applicant will join the research
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Quantum Information – Lx Work Objectives: The successful candidate will contribute to the ERC LESYNCH project. The aim of the work is to apply probabilistic methods and pseudo-random techniques to obtain
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for an additional year) in quantum condensed matter theory. Candidates with research interests in any of the following areas of quantum condensed matter theory will be preferred: nonequilibrium physics, strongly
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) will allow access to a dilution refrigerator. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR9001-FRACHI-005/Default.aspx Requirements Research FieldPhysicsEducation LevelPhD or equivalent
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3 Jul 2026 Job Information Organisation/Company Ghent University Research Field Engineering » Other Physics » Optics Physics » Quantum mechanics Physics » Other Researcher Profile Recognised
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4 Jul 2026 Job Information Organisation/Company Ghent University Research Field Engineering » Materials engineering Engineering » Other Physics » Quantum mechanics Physics » Solid state physics
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expected to be incremental. This calls for a completely different paradigm for accurately simulating turbulent flows at extreme Reynolds numbers – either using classical hardware or upcoming quantum