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RAP opportunity at National Institute of Standards and Technology NIST Fabry-Perot Interferometry for Accelerometers Location Physical Measurement Laboratory, Quantum Measurement Division
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gauge [1]. Based on a grating MOT of lithium [2, 3], our gauge delivers a zero-chain traceable measurement of vacuum down into the extreme-high vacuum regime (<1e-12 torr). While now theoretically
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Computational Methods for NMR Structural Biology and Biomanufacturing of Protein and Live Cell Therapeutics NIST only participates in the February and August reviews. Protein therapeutics
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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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quantum computing. Their dimensions range from a few to several hundred nanometers. There is special interest in color centers in nanodiamonds, which give them unique photonic and spin characteristics
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are particularly interested in developing and characterizing hybrid quantum systems (interfaces between dissimilar physical media), suitable for quantum information purposes, and exotic sources of faint light
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magnetometer, a high-field (7-T) superconducting quantum interference device magnetometer, a magnetic force microscope, Lorentz microscopy, and a newly developed magneto-optical indicator film apparatus
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the development of superconducting devices such as transition-edge sensors and superconducting nanowire single photon detectors, as well as single photon sources based on quantum dots, spontaneous parametric down
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NIST only participates in the February and August reviews. The Community Resilience Program (https://www.nist.gov/community-resilience ) is developing science-based tools to assess resilience and
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chiral Raman. The other approach is to use quantum cascade laser (QCL)-based absorption spectroscopy that can measure the secondary structures of proteins in aqueous solutions with a better concentration