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. Description: The Next Generation X-ray Optics (NGXO) team at NASA Goddard Space Flight Center develops advanced X-ray mirror technology using segmented monocrystalline silicon to enable future high-performance
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(including high- and mid-spatial frequency figure errors) into optical models and assessing their impact on high-contrast and high-resolution adaptive optics systems; understanding wavefront control
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three-dimensional canopy structure derived from GEDI, thermal and evapotranspiration information from ECOSTRESS, spectral indicators from optical satellite observations, and complementary information
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are high efficiency detectors and improved optical coatings. For example, solid-state photon counting detectors developed in our laboratory can dramatically increase the QE (>x 5) and significantly enhance
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and aspheric optical surfaces are revolutionizing telescope design by enabling wide field imaging in compact packages. The advantages for potential Astrophysics science missions are telescopes and
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biological and biogeochemical constituent concentrations and rates from the derived optical properties. Specifically, the aims are to develop advanced algorithms to retrieve from PACE and GLIMR remote sensing
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Organization DEVCOM Army Research Laboratory Reference Code ARL-C-WMRD-300028 Description About the Research CCDC ARL Center for Agile Materials Manufacturing Science (CAMMS, https
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characterization of individual aerosol particles by using multiple optical methodologies. Preference will be given to candidates having good experience in optics and laser spectroscopy, instrumentation, and