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Field
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We are seeking two postdocs to collaborate on developing a near-quantum-limited microwave amplifier for readout in superconducting quantum computers. One position will focus on nanofabrication
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, VASP, Quantum Espresso… Excellent communication skills (oral and written) in English. Good publication track record in peer-reviewed journals. Ability to work independently and as part of a
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, strain, or physical dimensions. These targets have significant overlap with open research in quantum phases in few-layer dichalcogenides and technological interest as potential coupled quantum dot arrays
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of computational materials discovery starting in Summer 2025 . Our group is seeking to discover novel materials for renewable energy applications using high-throughput quantum chemistry calculations and data-driven
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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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background in differential geometry, algebraic geometry, topology and quantum field theory. However, applications from all well-qualified candidates will be considered. Applicants should have an earned
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Postdoctoral Research Associate - Quantum Many-Body Physics University of Oklahoma Norman Campus: Dodge Family College of Arts and Sciences: Physics and Astronomy Location University of Oklahoma
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quantum information. The scalable design, synthesis, and control of materials capable of hosting quantum states, such as silicon carbide and diamond, play an integral role in solid state platforms
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This postdoc project aims to address a critical challenge in quantum computing: errors in superconducting qubits caused by cosmic radiation, which cannot be corrected using existing methods
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for highly motivated postdoctoral researchers to conduct advanced electron microscopy studies on quantum materials for neuromorphic computing. The primary objective of this research is to explore quantum