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: Quantum simulation with Rydberg atom arrays (theory) Research Area: Atomic, molecular, and optical physics (AMO), quantum control, quantum simulation Relevant Fields: Quantum information science, quantum
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contribute to the collaborative TQT research community. Principal Investigator: Na Young Kim Project Name: Solid-state analog Optimization Solver and Quantum Machine Learning (Theory) Research Area
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contribute to the collaborative TQT research community. Principal Investigator: Dmitry Pushin Project Name: Applications of neutron interferometry and structured neutron beams. Research Area: Experimental
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contribute to the collaborative TQT research community. Principal Investigator: David G. Cory Project: Superconducting electronics in magnetic fields for spin control The project involves both theory and
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contribute to the collaborative TQT research community. Principal Investigator: Na Young Kim Project: Carbon Nanotube (CNT) Quantum Electronic Devices Research Area: CNT material growth/processing and device
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to the collaborative TQT research community. Principal Investigator: Dmitry Pushin Project Name: Structured matter-wave and electromagnetic wave beams and their applications. Research Area: Experimental condensed matter
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collaboration with industry partners. This work will apply optimal control theory, including machine-learning algorithms and Bayesian estimation, to coherent control of nitrogen-vacancy centers in diamond
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the last 5 years or soon to be completed. Demonstrated experience in building machine learning/deep learning models using one or more large scientific data sets involving sequence, protein structures
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lasers (ECDL, Ti:Sa, Fiber), stabilization systems (optical phase lock loop, high-finesse cavity), digital and analog control electronics, active diffractive optical elements (spatial light modulators
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contribute to the collaborative TQT research community. Principal Investigator: David G. Cory Project: Quantum dynamics of cavity interactions with spin ensembles The project involves both theory and