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Published in Physical Review A, 2024
Method to embed quantum algorithms within DFT.
Recommended citation: Ralli, A., Williams de la Bastida, M., Coveney, P.V. (2024). "Scalable approach to quantum simulation via projection-based embedding". Physical Review A, 109, 022418. DOI: 10.1103/PhysRevA.109.022418 https://doi.org/10.1103/PhysRevA.109.022418
Published in Digital Discovery, 2025
Bickley, T.M. et al.
Recommended citation: Bickley, T.M., et al. (2025). "Extending quantum computing through subspace, embedding and classical molecular dynamics techniques". Digital Discovery, 4(12), 3427-3444. DOI: 10.1039/D5DD00225G https://doi.org/10.1039/D5DD00225G
Published in IOP Quantum Science and Technology, 2025
Williams de la Bastida, M., Bickley, T.M., Coveney, P.V.
Recommended citation: Williams de la Bastida, M., Bickley, T.M., Coveney, P.V. (2025). "Optimised fermion-qubit encodings for quantum simulation with reduced circuit depth". IOP Quantum Science and Technology. DOI: 10.1088/2058-9565/ae9b40 https://doi.org/10.1088/2058-9565/ae9b40
In review, 2026
Orlov, A., et al.
Recommended citation: Orlov, A., et al. "Quantum Computing and GPU-Accelerated Reaction-Barrier Calculations for aGPCR Autoproteolysis". In review.
Preprint, arXiv, 2026
Williams de la Bastida, M., Coveney, P.V.
Recommended citation: Williams de la Bastida, M., Coveney, P.V. (2026). "Parallel and Distributed Fermionic Simulation via Dynamic Encoding". arXiv:2609.31502. https://arxiv.org/abs/2609.31502
Lecturer, ProEd Et Al, 2023
Since July 2023 I have taught courses for ProEd Et Al:
Summer Course, Imperial College London, 2023
I was invited to write and deliver a 6 hour lecture course as part of a summer school held by Imperial College London for university applicants. The course was aimed at students with a background in computer science and was designed to introduce them to the basics of quantum computing.