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implementing BCDI, XPCS, nano-beam and time resolved microscopy, PDF, 3D imaging techniques, PCI, and other techniques for advanced characterization of materials across solid-liquid and into melt. Measurements
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, simulation, fabrication, and terahertz characterizations of the resonators. Set up terahertz and optical free-space experiments for the terahertz cavity and antiferromagnetic oxides, including thin films and
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to the design, fabrication, and characterization of superconducting devices based on high kinetic inductance materials. This position offers a unique opportunity to help build a new research capability with
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systems. The Postdoctoral Appointee will contribute to the development, manufacturing, characterization, and evaluation of additively and conventionally manufactured structural alloys. The position will
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research and development efforts in the synthesis, fabrication, and characterization of diamond and other host materials along with its associated solid-state quantum spin defects. As a key member of our
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using the Advanced Photon Source (APS) and other characterization techniques such as scanning electron microscopy (SEM) and powder diffraction. This is a one-year appointment centered on the development
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-dimensional (2D) nanomaterials into structural and functional composites designed for next-generation energy technologies. The position combines fundamental materials synthesis, advanced characterization
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imaging, ideally with the ability to carry out advanced measurements at the Advanced Photon Source. Experience with in-situ characterization and experimental apparatus development is especially valued. In
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, synthesize, and characterize new recyclable polymer systems, while evaluating their thermomechanical properties. The position also offers the opportunity to investigate catalytic reaction mechanisms through
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to substantially advance this new qubit platform by realizing high-fidelity two-qubit gates. The postdoc will design single electron qubit devices, fabricate them in CNM cleanroom, and characterize them in CNM