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RAP opportunity at National Institute of Standards and Technology NIST Complex Systems and Networks: Performance, Control, and Security Location Information Technology Laboratory, Applied and
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-pi decay-energy spectrometery (DES) system using ultra-low temperature Transition Edge Sensor (TES) micro-calorimeters to identify and quantify radionuclide samples embedded in the detector
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Integrated Photonic Interfaces to Free-space Volumes for Miniaturized Atomic and Molecular Optics Systems on a Chip NIST only participates in the February and August reviews. Postdoctoral research
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of failure strengths are needed to ensure reliability and maximize performance. We use numerous modeling approaches to explore the mechanical and electrical behavior of deforming nanoscale systems. Current
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Description Understanding the intermolecular environment surrounding complex molecules, ions, electrode surfaces, and nanomaterials is crucial for industries ranging from chemical manufacturing to water
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of these technologies are related to cell counting (“enumeration”) since cell count is often essential for interpretation of more complex measurements. Cell counting can seem like an easy measurement, but developing a
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precision microelectromechanical systems (MEMS) to improve measurement accuracy and throughput in scanning probe microscopy (SPM), particularly for scanning tunneling microscopy (STM) and atomic force
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Description By creating photon states with photon numbers of more than one, it is possible to make measurements with resolution beyond conventional limits. For example, in interferometric applications
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301.975.8087 Description One of the benefits of nanoimprint lithography (NIL) is that it can directly pattern functional materials, not just sacrificially resist formulations that are used to transfer
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NIST only participates in the February and August reviews. The goal of this project is to develop nano-electromagnetic imaging using scanning microwave, NV center, and magnetic resonance microscopy