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Field
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systems; quantum transport tools; and high-performance computing clusters. The individual will advance quantum science and technology to address practical applications in health, security, and
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contribute to exciting research in scaling up quantum computers in a collaborative and dynamic environment. About us The Department of Microtechnology and Nanoscience advances the frontiers in quantum
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Vibration Techniques Concepts, operation and maintenance of ultra-low vibration experiments, including control of mechanical, acoustic, cabling, vacuum-line, and cryogenic noise. • High-field Superconducting
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Characterization groups, which develops quantum photonic technologies for future fault tolerant quantum computing processors, while designing activities will be performed with the NQCP Theory and Simulation team
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, cabling, vacuum-line, and cryogenic noise. • High-field Superconducting Magnets Concepts, operation and maintenance of persistent superconducting magnets at fields up to 20 Tesla. • Superconducting Quantum
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. et al. (2024). Design of high-performance entangling logic in silicon quantum dot systems with Bayesian optimization. Scientific Reports 14, 10080. https://doi.org/10.1038/s41598-024-60478-9
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information at BNL | Benefits Program The Co-Design Center for Quantum Advantage (C2QA) at BNL coordinates a team of leading experts from national laboratories, academic institutions, and industry partners
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(e.g., Python, Julia, Fortran, C++, MATLAB) and experience with high-performance computing environments Demonstrated publication record in reputable peer-reviewed journals Excellent written and oral
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Physics; X-ray Spectroscopy; Electronic Structure; Ultrafast Dynamics , Condensed Matter Theory , Hard Condensed Matter Theory , High-temperature superconductivity , Quantum Condensed Matter Theory
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program of scholarly research, teaches undergraduate and graduate courses, participates in university, college and departmental governance, conducts professional and public service, and performs related