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Gaussian Amplitude Amplification for Quantum Pathfinding
Authors:Daniel Koch  Massimiliano Cutugno  Samuel Karlson  Saahil Patel  Laura Wessing  Paul M. Alsing
Affiliation:1.Air Force Research Lab, Information Directorate, Rome, NY 13441, USA; (M.C.); (S.P.); (L.W.); (P.M.A.);2.Air Force Academy, Colorado Springs, CO 80840, USA;
Abstract:
We study an oracle operation, along with its circuit design, which combined with the Grover diffusion operator boosts the probability of finding the minimum or maximum solutions on a weighted directed graph. We focus on the geometry of sequentially connected bipartite graphs, which naturally gives rise to solution spaces describable by Gaussian distributions. We then demonstrate how an oracle that encodes these distributions can be used to solve for the optimal path via amplitude amplification. And finally, we explore the degree to which this algorithm is capable of solving cases that are generated using randomized weights, as well as a theoretical application for solving the Traveling Salesman problem.
Keywords:quantum computing   quantum algorithms   amplitude amplification
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