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bulk crystals. Grow epitaxial antiferromagnetic oxide thin films, such as α-Fe2O3, Cr2O3, NiO, using magnetron sputtering system. Build and measure cavity coupling with antiferromagnetic magnon modes in
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Argonne National Laboratory invites applications for a postdoctoral research position in experimental physics and superconducting device development, focused on advancing multipixel single-photon
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Experience designing, building, and testing experimental setups for chemical or related process research Hands-on experience working with radiotracers, radioactive isotopes, irradiated targets, or related
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. This interdisciplinary work allows early-career researchers to build highly valuable expertise across quantum information science, materials science, engineering, and particle physics. Please feel free
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mathematics, or physics to apply their expertise to challenging problems in computational imaging, while collaborating with leading experts in physics, biology, and environmental science. Research Context Soil
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laboratory workflows. The position will focus on building the data resources, predictive models, and closed-loop decision frameworks needed to accelerate experimentation and advance next-generation autonomous
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platform for X-ray absorption spectroscopy by integrating LLMs, scientific machine learning, physics-aware workflows, and strong computational chemistry/electronic-structure expertise. The researcher will
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. The successful candidate will be a key member of a multidisciplinary research team between Materials Science Division and High Energy Physics Division at Argonne National Laboratory and work closely with
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, both focused on multimodal synchrotron characterization of defects and interfaces in oxides and 2D materials. These positions are part of a cross-facility initiative to build an “AlphaFold
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. The division aims to build lab-wide cross-cutting simulation application capabilities integrating with mathematics, computer science, domain science, and advanced computing architectures and facilities