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. In this project, we are developing metrology needed for the synthesis, processing, and characterization of low-dimensional materials to enable reliable nanoscale device development and manufacturing
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interest for us. Potential project areas include the design and development of systems that allow for careful control and measurement of the temperature and pressure of the sample; the development of peak
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, combines the resolution of STM (0.1 nm) with the broad applicability of electroluminescence. New methods combining spectroscopy and SPM are also under development. We look for candidates interested in
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, speciation). The project will focus on the design and development of front-end techniques, devices, and platforms with the potential to directly sample, or separate, analytes from complex matrices (e.g., dirt
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the development of superconducting devices such as transition-edge sensors and superconducting nanowire single photon detectors, as well as single photon sources based on quantum dots, spontaneous parametric down
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work is anticipated in the areas of microresonator design, engineering biology/biomanufacturing, dioxygen imaging in 3D cell culture, and structural biology methods development. Knowledge of microwave
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to predict materials properties is essential to improve materials design methods. This research will focus on the development and integration of first principle calculations; atomistic simulations; and/or
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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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. Opportunities exist for (1) the development of simple yet accurate modeling approaches that enable rapid collapse analysis of large structural systems, (2) comparison and quantification of the progressive
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@nist.gov 301 975 2093 Description This opportunity focuses on the development of analytical methods and/or data processing techniques that could be used to advance drug detection and identification (or drug