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and fractional quantum anomalous Hall states, superconductivity, and correlated insulators—that hold promise as the foundation for next-generation electrical standards and quantum information
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are affected by subtle changes in molecular weight, dielectric constant, charge valence, ionic strength, and charge density. The perturbation of the structure and dynamics at solid-liquid interfaces is poorly
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surfaces take advantage of the increased electrical functionality, chemical and structural robustness, wealth of fabrication knowledge, and present a less disruptive technology compared with monolayers
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Quantum materials are those in which electronic correlations lead to emergent collective behavior with exotic and potentially useful properties. Current topics of interest include, but are not limited
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characterization of final structures. Device performance and reliability of the final structures under thermal, mechanical and electrical stressors should be considered. key words flexible electronics; materials
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. These fabrication tools are complemented by post-growth device assembly, nanoscale structural/electrical/optical measurements, and comprehensive multiscale & multiphysics material and device modeling. We are open to
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of direct electrical pulse heating to probe the effects of high temperature and rapid heating rate on the dynamic flow stress of metals, and the real-time measurement of surface deformation using high speed
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measurement methods for quantifying nanoscale transport, doping, crystallographic, piezoelectric, and optoelectronic phenomena. Current device interests include nanowire lasers, microLEDs, photodetectors
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NIST only participates in the February and August reviews. This research opportunity centers on advancing experimental measurement methods to quantify complexes formed between charge-altering
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a variety of nanoscale materials systems for use in photonic quantum information systems. Examples of materials of current interest include III-V semiconductors (InAs quantum dots, ErAs nanoparticles