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Field
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industry to employ quantum technologies to address challenges in, e.g., environmental protection and the optimal use of natural resources. Specifically, this project will use atom Interferometry
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techniques for matter wave interferometry. Our current investigations cover aspects of matter wave interferometry, quantum synchronization, and an exploration of computational complexity versus robustness
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National Aeronautics and Space Administration (NASA) | Greenbelt, Maryland | United States | 19 days ago
-borne, and space instruments; however, the hardware, firmware, and software approaches developed have diverse applications including space-based interferometry and advanced radar systems. The successful
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quantum-dot single-photon sources, multi-photon quantum information processing, integrated quantum photonics and time-bin interferometry. Your research competence and initiative are proven through
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or atom interferometry experience: Familiarity with laser-cooled atoms, optical clocks, single-photon atom optics, atom interferometry, or frequency-stabilized lasers. Scientific computing: Experience with
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/APPF capability development, hybrid metrology (coordinate measurement, deflectometry, interferometry), and physics-informed ML. The appointee will collaborate closely with internal teams and external
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profound expertise in experiments with quantum-dot single-photon sources, multi-photon quantum information processing, integrated quantum photonics and time-bin interferometry. • Your research competence
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Good to very good grades First experiences with algorithm development preferably using Python or MATLAB Basic understanding of Quantum Optics and Interferometry Interest to learn about Fourier optics and
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal
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-rate signal processing, HF radio, remote sensing, radar, wireless communications, RF signal processing, radio astronomy/interferometry, ionosphere, geodesy, reference frames, orbital mechanics, and