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, Hong Kong [map ] Subject Areas: Physics / Complex Quantum Systems , Computational Materials Sciences , Computational physics , Condensed Matter Physics , Condensed Matter Physics; Condensed Matter
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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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benchmarking. Support experimental collaborators with theory for characterization of quantum devices. Develop and implement new theoretical methods and processes for this field in collaboration with researchers
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, Experimental Solid State , Experimental Subatomic Physics , Experimental Ultrafast Physics , Field Theory , Fluid Physics , Fundamental Quantum Science , GR-Cosmology (gr-qc) , Gravitational Physics
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of Microtechnology and Nanoscience. Join our innovative theory team and contribute to exciting research in understanding, and developing applications based on, a new paradigm of quantum optics: giant emitters, i.e
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quantum physics , Quantum Condensed Matter Theory , Quantum Field Theory , Quantum Materials , Superconductivity , theoretical condensed matter physics , HEP-Theory (hep-th) , Holographic Condensed Matter
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Location: Miami, Florida 33199, United States of America [map ] Subject Areas: Physics / Condensed Matter Physics , Condensed Matter Physics; Condensed Matter Theory; Computational Physics; X-ray
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: Applications accepted all year round Details This project is concerned with quantum field theory in curved space-time, a semiclassical approach to the as-yet-elusive theory of quantum gravity. In this set-up
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advances the interface of quantum information science and condensed matter theory, particularly in areas such as quantum computation, quantum error correction, quantum simulation, tensor-network methods
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production at LHCb https://arxiv.org/pdf/2507.13447 - Theory-Informed Neural Networks for Particle Physics. Knowledge & Experience Essential Background in high energy particle physics and/or advanced quantum