Parameter Tuning Patterns for Random Graph Coloring with Quantum Annealing

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Abstract

Quantum annealing is a combinatorial optimization technique inspired by quantum mechanics. Here we show that a spin model for the k-coloring of large dense random graphs can be field tuned so that its acceptance ratio diverges during Monte Carlo quantum annealing, until a ground state is reached. We also find that simulations exhibiting such a diverging acceptance ratio are generally more effective than those tuned to the more conventional pattern of a declining and/or stagnating acceptance ratio. This observation facilitates the discovery of solutions to several well-known benchmark k-coloring instances, some of which have been open for almost two decades. © 2012 Titiloye, Crispin.

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APA

Titiloye, O., & Crispin, A. (2012). Parameter Tuning Patterns for Random Graph Coloring with Quantum Annealing. PLoS ONE, 7(11). https://doi.org/10.1371/journal.pone.0050060

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