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) Theoretical Modeling: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate
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relevant areas, including lattice QCD, effective field theory, hadronic/nuclear scattering, is preferred. Department Contact for Questions For questions about the position, please contact Dr. Sebastian Dawid
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theory, AMO–condensed matter interfaces, advanced numerical simulations, quantum sensing, hybrid quantum systems Dr. Ceren B. Dag invites applications for a postdoctoral fellow to support theoretically
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Theoretical Quantum Many-body Physics and Quantum Sensing at Indiana University Bloomington Fields: Quantum many-body theory, AMO–condensed matter interfaces, advanced numerical simulations, quantum sensing
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: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate the detection of vacuum
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) Theoretical Modeling: Develop and refine models for entanglement harvesting using continuous-variable quantum information theory and Gaussian quantum states steering. (2) Experimental Simulation: Simulate