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Field
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to create cold atomic gases, like deceleration of atomic beams, atom trapping, sub-Doppler cooling, optical lattices, etc. Today we use cold atomic gases, often quantum degenerate systems, to study a variety
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opportunities are available in developing integrated nanophotonic architectures and devices for realizing compact, efficient, accurate and dynamic quantum AMO systems-on-a-chip. By creating a set of scalable
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RAP opportunity at National Institute of Standards and Technology NIST High-Performance Cryogenics Location Physical Measurement Laboratory, Quantum Electromagnetics Division opportunity
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, further enabling adoption of cold atom sensors. Finally, we are exploring means of better coupling atoms and photonic components to achieve new routes to quantum-enhanced sensing, quantum simulation
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functional and passivation layers essential for realization of quantum transducers. Novel materials in thin-film form are essential to the progress of quantum technologies. Thin-film synthesis of nonlinear
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this opportunity, we will investigate the electronic properties of candidate quantum materials or organic (molecular) semiconductors. We will use and develop measurement approaches to determine key electronic
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RAP opportunity at National Institute of Standards and Technology NIST Advanced Instrumentation for Fundamental Electrical Measurements Location Physical Measurement Laboratory, Quantum
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a particular wage. Position Summary Information Job Description Summary Researcher will undertake research in theoretical physics, with a focus on quantum foundations as outlined in the Templeton
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Postdoctoral Fellow in the area of quantum mathematics, especially quantum topology, including skein theory, topological quantum field theory, and applications to quantum computing. Position Number 4C2387
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RAP opportunity at National Institute of Standards and Technology NIST Johnson Noise Thermometry with Superconductive Waveform Synthesizers Location Physical Measurement Laboratory, Quantum