arXiv · 2610.04068
Interaction-Aware Embedding Optimization for Neutral-Atom Quantum Processors
Abstract
Neutral atom-based quantum computers have the ability to dynamically reshape the qubit register geometry between experimental runs. This capability enables different types of problems to be mapped directly onto the hardware, significantly enhancing the efficiency of solving, for instance, complex optimization and machine learning use-cases. However, this flexibility requires finding atom positions to implement target pairwise interactions, inducing a difficult nonconvex optimization for setting up the quantum machine. In this work, we introduce a new force-directed method that targets interactions to encode the input problem on the quantum computer. Numerical results show that our new method can improve embedding feasibility and solution quality by orders of magnitude, and remains reliable on the largest instances.
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Clément de Terrasson de Montleau, Victor Drouin-Touchette, Wesley Coelho. 2026-10-02. Interaction-Aware Embedding Optimization for Neutral-Atom Quantum Processors. https://arxiv.org/abs/2610.04068
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