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an understanding of the basic properties of atom-based solid-state and nanoscale systems, optics on the nanoscale (nano-optics) quantum processes in atom-scale and nanoscale systems with optical fields, and quantum
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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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NIST only participates in the February and August reviews. The goal is to lead innovative projects advancing infrared absorption spectroscopy techniques. We focus on the high-sensitivity
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303.497.3665 Karl Francis Stupic [email protected] 303.497.4564 Description Neural net systems have been developed to process magnetic resonance imaging (MRI) data from sensor space into real space and
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obtain the entire vibrational spectrum of a sample in a single laser pulse, and with ultrafast time resolution. This spectroscopy is forbidden in isotropic bulk media (e.g., liquids, gases, and solids
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detectors is motivated primarily by needs for measurement services and standards for homeland security applications, such as personnel radiation dose measurements in the vicinity of active interrogation
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disruptive events. More research is needed to understand the planning, protective, and recovery processes of its highly interdependent physical, social, and economic systems. In particular, advancements in
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Neutron Reflectometry Investigations for Energy Production, Conversion, and Storage NIST only participates in the February and August reviews. Neutron reflectometry (NR) is an ideal technique for in
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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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interactions, and phonon confinement effects. Therefore, it is important to understand phonon propagation in nanomaterial systems at multiple length and temporal scales for which we need a robust mathematical