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and novel 2D quantum materials including unconventional superconductors. The successful candidate must have substantial experience in state-of-the-art ARPES and/or low temperature STM/STS techniques
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position to work on a new collaborative project in a team with expertise in plasma and plasma-surface interactions, surface science, and quantum metrology. The overall goal of the project is to develop
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emerging technologies such as artificial intelligence, quantum technologies, and space-based systems, including large satellite constellations. A recent PhD in physics, engineering, computer
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and novel 2D quantum materials including unconventional superconductors. The successful candidate must have substantial experience in state-of-the-art ARPES and/or low temperature STM/STS techniques
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patient care. Visit Moore.org or follow @MooreFound. The foundation's $185-million EPiQS initiative promotes discovery-driven research in the field of quantum materials (http://www.moore.org/programs
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on nuclear arms control, disarmament, nonproliferation, verification, and on the global security challenges associated with emerging technologies such as artificial intelligence, quantum technologies, and
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Sustainability *Optical Materials and Light Matter Interactions *Quantum Materials Science The term of appointment is based on rank. Positions at the postdoctoral rank are for one year with the possibility
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focus on angle-resolved photoemission (ARPES) and scanning tunneling spectroscopy (STS/STM) based studies of topological, strongly correlated and novel 2D quantum materials including unconventional
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with expertise in plasma and plasma-surface interactions, surface science, and quantum metrology. The overall goal of the project is to develop the ability to controllably engineer diamond surfaces