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or battery materials testing is recommended but not required. The candidate will design or modify laboratory procedures and protocols, develop experimental designs, run technical experiments, make detailed
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photonic quantum devices for a heterogeneous quantum network, including but not limited to superconducting qubits, microwave-optical quantum transducers, etc. The postdocs will design the devices, fabricate
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systems. In parallel, they will design and develop agentic AI and physics-aware AI models to accelerate discovery and deepen mechanistic insight in catalysis. This work will be carried out in close
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, offering unique opportunities to design, synthesize, and characterize NV diamond sensors tailored for demanding experimental environments. The postdoctoral researcher will drive the integration
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safely handling air sensitive chemicals Demonstrated problem-solving and innovation skills Strong organizational and critical thinking skills. Able to prioritize and manage time effectively. Ability
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. This role offers the opportunity to contribute to cutting-edge energy storage research through the design, evaluation, and development of next-generation battery materials and cells. Under the direction of a
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(IDs) in the APS storage ring, oversee controls for three magnetic measurement laboratories, and help design ID control architectures for next-generation light sources. This position requires strong
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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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networking, distributed quantum computing, quantum-system architectures, or closely related areas. Develop models, algorithms, simulation capabilities, and research software for the design and evaluation
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device-relevant properties Design active learning, Bayesian optimization, uncertainty-aware modeling, and other adaptive experimental design workflows to guide experiments and improve data efficiency in