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Field
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. Numerical diffraction calculations are highly computationally intensive, so efficient parallelizable software implementations are necessary. This research will investigate and develop sophisticated algorithms
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excited by an external THz source to generate localized electromagnetic near fields. These fields will then be mapped with subwavelength spatial resolution, beyond the diffraction limit, using Rydberg atoms
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science to achieve astrometric measurements at unprecedented levels of precision. To accomplish this, a unique optical system has been developed that uses a diffractive mask to imprint a highly stable
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of materials and devices during switching, combining methods such as laser pump and X ray probe total scattering, WAXS and SAXS, imaging, and femtosecond X ray diffraction to probe structure and dynamics in real
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), knowledge of MOF material research techniques, including at least powder X-ray diffraction (PXRD), spectroscopic techniques (FT-IR, NMR, UV-vis), sorption techniques (particularly gas physisorption), and
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total scattering, WAXS and SAXS, imaging, and femtosecond X ray diffraction to probe structure and dynamics in real time under device relevant conditions. Target facilities include DESY, MAX IV, European
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, vapor transport, flux growth, Bridgman growth, and related methods. Additional desirable qualifications include expertise in crystal structure determination using X-ray diffraction; experience with bulk
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). Additional desirable qualifications include experience in the thermal, magnetic, morphological, and structural characterization of materials, particularly by X-ray diffraction (XRD); magnetic and structural
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of relevant experience Experience with mechanical testing and ceramic powder characterization (e.g., particle size distribution, specific surface area, pycnometry and x-ray diffraction, and tap density
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results, including scanning electron microscopy, X-ray diffraction, transmission electron microscopy, and related techniques. Job Requirements: PhD degree in a relevant field of physical sciences