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how fluid dynamics can be simulated on quantum computers by designing novel quantum algorithms, implementing software, and evaluating their performance on quantum computer simulators and potentially
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PhD fellowship in fault tolerant quantum algorithms PhD Project in state preparation, observable extraction or noise modelling Niels Bohr Institute Faculty of Science University of Copenhagen
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. B1 Grundstufe (praedoc) Limited until: 31.10.2030 Reference no.: 6201 Are you interested in the study of problems in quantum many-body physics through the lens of quantum information and quantum
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VwGr. B1 Grundstufe (praedoc) Limited contract until: 31.10.2030 Job ID: 6201 Are you interested in the study of problems in quantum many-body physics through the lens of quantum information and quantum
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conduct cutting-edge research on the interplay of theoretical computer science, mathematics, and quantum mechanics. Particular topics include classical and quantum aspects of: Sublinear algorithms and
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algorithms on a four qubit quantum processor, realized baseband control of single spins, and demonstrated entanglement between remote spin qubit registers using spin shuttling. As a PhD researcher, you will
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the interface between the classical and quantum worlds. You will design QEC codes suited to realistic hardware, develop the decoding algorithms that make them practical, and map the trade-offs between reliability
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error-correcting codes, establishing fundamental performance limits, and building practical decoding algorithms and architectures. Your research will sit at the interface between the classical and quantum
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assessment Development of hybrid quantum–classical algorithms for power system security assessment and operation Integration of quantum algorithms with large-scale HPC simulation frameworks developed at ICE-1
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algorithms in the context of the ERC WINC project (www.winc-project.eu ). Functions to be developed: Study recent trends in the field of quantum computing for communications and computing. Analyze limitations