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RAP opportunity at National Institute of Standards and Technology NIST Atom-based Solid-state Quantum Devices and Simulators Location Physical Measurement Laboratory, Quantum Measurement
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NIST only participates in the February and August reviews. We use neutron reflectometry to study a variety of fundamental physical and chemical phenomena at solid-solid, liquid-liquid, solid-liquid
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to the study of biologically important problems. We have developed a novel approach to VR-SFS using ultrafast (< 50 femtosecond) lasers to generate infrared pulses that have a broad spectrum which enables us to
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measurement capabilities to determine the fundamental properties of solid-state systems through a rigorous experimental suite: Cryogenic Measurements: Performing high-precision characterization of novel devices
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, gels) at the solid-liquid interface. Both emerging and established technologies depend and focus on charged macromolecules including the dissolution of advanced photoresists, microfluidic channel
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, temperature, aerosol levels, and other physical environmental variables. Such measurements require high accuracy to meet the stringent demands of climate research, land and environmental monitoring, and weather
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NIST only participates in the February and August reviews. Nanoporous solids such as zeolites and metal-organic frameworks have wide applications in gas separation and storage, and have recently
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spectroscopy, and CODEX methods for dynamics on micro/milli-second timescales, and (3) pulsed field gradient NMR for chemically-specific transport on micron length scales. key words Polymers; Solid-state NMR
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opportunities in batteries by characterizing the structure of the Solid Electrolyte Interphase (SEI) layer, in-situ, in a Li-ion battery as a function of operating conditions (Owejan et al.), to illuminate
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sample can be gas, liquid, or solid. Despite these advantages, the use of NMR for high-accuracy mixture analysis has been largely limited to one-dimensional 1H NMR spectroscopy on liquid-phase samples