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Field
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within themes such as the green-transition, medicine, material development and quantum chemistry. In addition, the department trains excellent graduates in chemistry who are employed in Danish and foreign
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to advance research in the areas of microelectronics, quantum sensors and devices, and sustainability sciences. Whether it be through science, engineering, technology or professional services, every team
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focus on a variety of key technologies like Distributed IT Systems, Internet of Things, IoT, Cybersecurity, Data Science, Artificial Intelligence (AI), Blockchain Technologies, Quantum & Photonic
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transformations as they relate to microelectronics, quantum materials, quantum information systems and autonomous synthesis in support of ORNL’s “atoms to applications” strategic initiative. As part of the CNMS
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used to manufacture high-precision glass components for the semiconductor industry, medical technology, and quantum technology with detailed dimensions of < 1 µm. The strong focusing of ultrashort pulsed
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systems, and biomedicine and health. It provides foundations and advances in quantum information sciences to enable quantum computers, devices, and networked systems. It develops community applications
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, and positioning ORNL as the national leader in geospatial HPC, data infrastructure, and emerging computing paradigms (edge compute, neuromorphic, quantum). In this capacity you will be responsible
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, biophotonics, light-enabled nanotechnology, nanophotonics, nonlinear optics, optical metrology, optical quantum technology, and ultrafast spectroscopy. The research program of the candidate is expected
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research, including classical and quantum electrodynamics, atomic, optical, and condensed-matter physics, and elementary-particle and nuclear physics. This role requires both technical expertise and teaching
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to formulate scientific problems relevant to nanoscale materials and DOE mission areas (e.g., microelectronics, energy capture/storage/conversion, quantum information science) Experience with data-intensive