Volta

Quantum–Classical Hybrid Architecture for Solving the Muskat–Leverett Model

Unknown authors · 2025
hash_id: eb50b07b1b826df9a30ba3eaf4e6c8dc0beae8d5334e811a92afd8b79fc46186 · DOI: 10.1049/qtc2.70022

ABSTRACT Hybrid quantum–classical architectures demonstrate significant potential for efficiently solving complex physical models. This study focuses on developing and implementing a hybrid quantum–classical algorithm to solve the Muskat–Leverett model by reformulating it as a system of linear equations. By expressing the Muskat–Leverett model in matrix form , we enable the application of quantum algorithms. We leverage classical computational platforms (CPU and GPU) alongside quantum computing to efficiently solve the model, achieving competitive accuracy and demonstrating potential for scalability compared to traditional methods. The Harrow–Hassidim–Lloyd algorithm and the variational quantum linear solver were utilised to design quantum circuits and variational ansatz. The study evaluates quantum solutions with classical optimisation, variational methods, fully classical solutions on graphical processors and purely quantum solutions. …

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Simulation of Quantum Computers: Review and Acceleration Opportunities secondary