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Superposed Quantum Error Mitigation

Jorge Miguel-Ramiro, Zheng Shi, Luca Dellantonio, Albie Chan, Christine A. Muschik, Wolfgang Dür

2023Physical Review Letters14 citationsDOI

Abstract

Overcoming the influence of noise and imperfections is a major challenge in quantum computing. Here, we present an approach based on applying a desired unitary computation in superposition between the system of interest and some auxiliary states. We demonstrate, numerically and on the IBM Quantum Platform, that parallel applications of the same operation lead to significant noise mitigation when arbitrary noise processes are considered. We first design probabilistic implementations of our scheme that are plug and play, independent of the noise characteristic and require no postprocessing. We then enhance the success probability (up to deterministic) using adaptive corrections. We provide an analysis of our protocol performance and demonstrate that unit fidelity can be achieved asymptotically. Our approaches are suitable to both standard gate-based and measurement-based computational models.

Topics & Concepts

Computer scienceNoise (video)Probabilistic logicSuperposition principleQuantum computerComputationFidelityIBMUnitary stateComputer engineeringQuantum noiseQuantumAlgorithmPhysicsQuantum mechanicsTelecommunicationsArtificial intelligencePolitical scienceLawOpticsImage (mathematics)Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum Mechanics and Applications
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