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such as microLEDs, photonic crystals, metamaterials, mechanical resonators and specialty scanning probes. These structures exhibit unique physical phenomena and pose new materials characterization
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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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NIST only participates in the February and August reviews. Metals-based additive manufacturing (AM) processes, or metals 3D printing, such as laser powder bed fusion and directed energy deposition
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) and superconductors (WSi, MoSi, NbTiN) for single-photon detectors, all of which are developed at NIST. In addition to device processing and electrical and optical characterization, we are interested in
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microscope (STEM) image. This is a fundamental transformation from the existing image acquisition paradigm and could enable new types of nano- and atomic-scale metrology. The Material Measurement Laboratory
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communities impact all aspects of the world in which we live, and our relationships with surrounding microbial populations can have negative and positive impacts on the survival of both. The development
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are often destructive, insufficient in resolution and sensitivity, and are subject to bias inherent in the measurement process. New methods for quantitative, in situ characterization are essential for gaining
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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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patient’s target cells to treat intractable diseases, such as cancer and genetic diseases. Infectious titer is a critical measurement of viral vector function and potency. Such functional measures of viral
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, internal dynamics, materials physics and chemistry is of primary importance in determining the processing, performance and viability of advanced ceramic components such as relevant to solid oxide or hydrogen