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. Utilizing a combination of experimental and computational approaches, we develop and characterize novel functional materials and devices driven by robust nanoscale quantum effects. We are currently seeking a
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77843, United States of America [map ] Subject Areas: Physics / Atomic, Molecular, and Optical Physics , Biophysics , Experimental Ultrafast Physics , Metrology , Optics and Photonics , Quantum Computing
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knowledge of the Boltzmann and quantum Boltzmann equation as well as stimulated Brillouin and Raman scattering. General: Knowledge of scientific programming language(s) and computer simulation
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cavity structure enable a mechanism for the controlled Bose-Einstein condensation at room temperature, with applications in all-optical computing Nature Photonics 13 378 (2019) and quantum sensing Nature
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. The successful candidate will be joining the Ultracold Quantum Gases group led by Prof. Dr.Leticia Tarruell . The Fermi-Hubbard model is a cornerstone model of condensed matter physics. It describes the physics
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candidate should have (or expect to soon be awarded) a PhD in quantum information theory (including some aspects of quantum computing, quantum cryptography and/or quantum communication) and some experience in
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candidate should have (or expect to soon be awarded) a PhD in quantum information theory (including some aspects of quantum computing, quantum cryptography and/or quantum communication) and some experience in
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Fudan University, Department of Physics/Atom Quantum Computing Lab Position ID: Fudan University -Department of Physics/Atom Quantum Computing Lab -PD [#29908] Position Title: Position Location
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studies how local environments impact the chemical physics of chemical reactions at battery and atmospheric interfaces, the homeostatic control of photosynthesis, and/or next generation quantum devices
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topics would be advantageous: open system quantum optics, many-body physics, cold atom physics, computational physics, quantum physics, nano-photonics and metamaterials. The appointment will be for two