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, modulators, and photodetectors — with trapped-ion and neutral-atom systems to realize a new generation of quantum sensors with reduced size, weight, and power consumption (SWaP). Such fully integrated, compact
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303.497.6184 Description We are looking for an atom based high power laser intensity measurement system. This atom-based technique should be traceable to the international system of standards and have potential
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of cryogenics that are user-friendly, compact, and power efficient. As part of the cryogenic detector development effort, NIST also develops the requisite cryogenic systems, which include both cryocoolers and
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relationship of structure and function in chemical and material systems by the integration of synchrotron X-ray measurement techniques with chemical processes and materials synthesis. The duty station would be
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301.975.2235 Description We are developing novel methodologies and approaches to modeling complex systems consisting of a large number of interacting elements. The models should not only have predictive power
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NIST only participates in the February and August reviews. Accurate measurement of optical radiation is important for the optical communications, medical device, semiconductor lithography
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terms in atomic displacements. The power of the CGFMD technique arises from the fact that the corresponding temporal equations can be solved exactly even for quadratic terms in displacements. This is in
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allows simultaneous rheological and structural measurements in the flow-vorticity (1-3 plane) and shear gradient-vorticity (2-3 plane) planes where the incident beam is parallel to the shear gradient and
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, molecular motions and collective membrane dynamics in these self assembled systems as a function of lipid composition as well as inclusions such as cholesterol and proteins and how those might be affected by
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processing equipment is available for prototyping of specialized nanostructures. key words Nanotechnology; Quantum nanowires; Wide band-gap semiconductors; Metamaterials; Power electronics; Eligibility