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Quantum Metropolis Solver: a quantum walks approach to optimization problems

Roberto Campos, Pablo A. M. Casares, M. A. Martín-Delgado

2023Quantum Machine Intelligence24 citationsDOIOpen Access PDF

Abstract

Abstract The efficient resolution of optimization problems is one of the key issues in today’s industry. This task relies mainly on classical algorithms that present scalability problems and processing limitations. Quantum computing has emerged to challenge these types of problems. In this paper, we focus on the Metropolis-Hastings quantum algorithm, which is based on quantum walks. We use this algorithm to build a quantum software tool called Quantum Metropolis Solver (QMS). We validate QMS with the N-Queen problem to show a potential quantum advantage in an example that can be easily extrapolated to an Artificial Intelligence domain. We carry out different simulations to validate the performance of QMS and its configuration.

Topics & Concepts

SolverComputer scienceQuantumScalabilityQuantum algorithmDomain (mathematical analysis)Quantum walkQuantum computerFocus (optics)Key (lock)Theoretical computer scienceMathematical optimizationMathematicsPhysicsQuantum mechanicsDatabaseMathematical analysisComputer securityProgramming languageOpticsQuantum Computing Algorithms and ArchitectureBlockchain Technology Applications and Security