Demonstration of Weighted-Graph Optimization on a Rydberg-Atom Array Using Local Light Shifts

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Abstract

Neutral-atom arrays have emerged as a versatile platform toward scalable quantum computation and optimization. In this paper, we present demonstrations of solving maximum-weighted independent-set problems on a Rydberg-atom array using annealing with local light shifts. We verify the ability to prepare weighted graphs in one-dimensional (1D) and two-dimensional (2D) arrays, including embedding a five-vertex nonunit-disk graph using nine physical qubits and demonstration of a simple crossing gadget. We find common annealing ramps leading to preparation of the target ground state robustly over a substantial range of different graph weightings. This work provides a route to exploring large-scale optimization of nonplanar weighted graphs relevant for solving relevant real-world problems.

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De Oliveira, A. G., Diamond-Hitchcock, E., Walker, D. M., Wells-Pestell, M. T., Pelegrí, G., Picken, C. J., … Pritchard, J. D. (2025). Demonstration of Weighted-Graph Optimization on a Rydberg-Atom Array Using Local Light Shifts. PRX Quantum, 6(1). https://doi.org/10.1103/PRXQuantum.6.010301

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