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@nist.gov 843.460.9894 Description This research focuses on developing new applications of high resolution/accurate mass (HRAM) mass spectrometry for exposure sciences and forensic analyses. HRAM mass
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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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This research focuses on developing new applications of high resolution/accurate mass (HRAM) mass spectrometry for environmental, forensic, and nutritional analyses. HRAM mass spectrometry instrumentation has
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Description We are currently developing microsystems for multiplexed biomolecular analysis (e.g., gene expression, microRNAs, proteins, cytokines) at the single cell level. Research goals include developing
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301 975 3155 Description The project aims to develop nanoscale optical imaging microscopy using DUV and EUV light sources for accurate characterization of nanoscale structures that contributes
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301.975.3113 Karen Williams Phinney karen.phinney@nist.gov 301.975.4457 Description Research focuses on developing new techniques for determination of compounds of forensic interest. We are particularly
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, acoustic-electric spectroscopy, and other nonlinear materials characterization techniques. We will develop on-wafer acoustic microfluidic devices. Necessary skills include finite element simulations, digital
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Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials
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for postdoctoral applicants to develop SEM reference samples in NIST’s NanoFab and to develop models to simulate electron scattering, secondary electron generation, electron transport, scattering in gases
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causes of data variability to improve product quality and reproducibility [1]. Simulation Modeling: Developing theoretical and mathematical descriptions of physical phenomena, including both physics-based