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Matter Theory , Quantum Control , Quantum criticality and phase transitions , Quantum Devices and Sensing , Quantum Dynamics , Quantum error correction , Quantum Field Theory , quantum gravity , Quantum
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Outreach , Plasma Physics , QCD , Quantum chaos and thermalization , Quantum Computation , Quantum Computing , Quantum Condensed Matter Theory , Quantum Control , Quantum Devices and Sensing , Quantum
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non-relativistic holographic frameworks. The project focuses on establishing and using controllable limits of string theory and holography—particularly non-Lorentzian (e.g. Galilean/Newton–Cartan and
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designing control systems that offer guarantees of safety and constraint satisfaction. The project will research the theory and computation of invariant sets, and their application to new control problems
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research group of Prof. Quoc Ho (https://quocho.com/ ), whose current research interests lie in the intersection of geometric representation theory, categorification, knot invariants/topological quantum
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-on experience in VHDL/Verilog programming for FPGA-based control and signal processing applications. Strong understanding of digital control theory, loop tuning methods, and stability analysis for dynamic systems
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to coordinated behaviors and perceptions. There will be collaboration with the lab members at LBNL. We are looking for a post-doctoral researcher to work at the interface of control theory, information theory
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/systems theory and optimization is desirable. Full details of how to apply can be found at the following link: https://www.sheffield.ac.uk/acse/research-degrees/applyphd Applicants can apply for a
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of modern condensed matter physics, from the existence of anyonic excitations in quantum Hall systems to the emergence of gauge theories in strongly-correlated materials. Ultracold atomic gases subjected
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theory, modeling, and AI-assisted optimization activities within the consortium. Reporting and dissemination of the results. Share this opening! Use the following URL: https://jobs.icfo.eu/?detail=1074