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RAP opportunity at National Institute of Standards and Technology NIST Conductivity and Resistivity of Materials Location Physical Measurement Laboratory, Quantum Measurement Division
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RAP opportunity at National Institute of Standards and Technology NIST Engineering Atoms for Fundamental Constants and Atomic Data Location Physical Measurement Laboratory, Quantum Measurement
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-film samples on waveguide interfaces and gas phase samples over temperature ranges from 1.7 K to 350 K. The experimental results are modeled using high-level quantum mechanical methods (DFT/MP2/MRCI
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physical sensing, quantum science, communications, and dynamic spectroscopy. We have developed novel approaches to comb generation [1], spectral translation [2], and their use to interrogate cavity
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insight into microbial communities in their unperturbed state. This project will use in situ advanced measurement techniques such as flow cytometry, quantum cascade laser infrared (QCL-IR) microscopy, and
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. These resonators are being applied to mass and force sensing, inertial sensing, biochemical sensing, and quantum-limited measurements. New tools are also being developed to better understand the physics
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equipment is used, including superconducting quantum interference device (SQUID) magnetometers, vibrating sample magnetometers (VSM), SQUID VSM, Mössbauer spectroscopy, ferromagnetic resonance, x-ray
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, manufacturing and materials processing industries, and it also has scientific applications for solar irradiance, Earth radiance, accurate calibration of astronomical instruments, and emerging needs of quantum
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RAP opportunity at National Institute of Standards and Technology NIST Atomic Physics for Plasma Spectroscopy Location Physical Measurement Laboratory, Quantum Measurement Division opportunity
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RAP opportunity at National Institute of Standards and Technology NIST Discrete Photon Detection Location Physical Measurement Laboratory, Quantum Measurement Division opportunity location