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Field
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, quantum computing, nuclear fusion, pandemic modelling and faster digital technologies. We pride ourselves on closely aligning our teaching with the University's research-intensive ethos. Research led
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The Centre for Quantum Technologies (CQT) in Singapore brings together physicists, computer scientists and engineers to do basic research on quantum physics and to build devices based on quantum
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treatment. Experience in quantum chemistry and reaction dynamics. Interest in applying methods to simulate materials to be used in quantum computation technologies. Strong programming skills, especially in
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and Technology of China. The accepted postdocs will work on one or more of the following subjects or related subjects: quantum simulation of gauge theory, quantum observables in high energy colliders
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for Quantum Simulation for Molecular and Material Design. The aim is to leverage our strong expertise in Quantum Computing to contribute to Quantum Simulations in relation to Molecular and Material
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communication (e.g., advanced QKD networks), distributed quantum computing, quantum‑secure enterprise connectivity and quantum teleportation services across metropolitan or regional distances. However, unique
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Moser. On the forced Burgers equation with periodic boundary conditions. Differential Equations: La Pietra 1996, 65:133–153, 1998.] with a view to solving it on a quantum computer [Baumann et al. Solving
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nitrogen-vacancy (NV) diamond quantum magnetometry for high-energy physics experiments. The HEP Division performs cutting-edge research leveraging advanced detector development, high-performance computing
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heterostructures for functional quantum devices. The candidate will receive a broad training on computational materials modelling and gain experience with cutting edge quantum transport simulation methods, conduct a
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an established code (for example VASP, Quantum ESPRESSO). ● Research experience performing molecular dynamics simulations. ● Experience training, fine-tuning, or validating machine-learning interatomic