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July 3, 20241 citations

A Methodology to Select and Adjust Quantum Noise Models Through Emulators: Benchmarking Against Real Backends

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JBJ.A. Bravo-MontesUniversidad Complutense de MadridMBMiriam BastanteHI Iberia (Spain)GBGuillermo BotellaUniversidad Complutense de Madrid

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Abstract

Abstract Currently, access to quantum processors is costly in terms of time, and power.There are quantum simulators and emulators on the market that offer alternativesfor evaluating the behavior of a real quantum processor. However, these emulationenvironments present accuracy deviations from real devices, mainly becauseof difficult-to-model error sources. In this study, a methodology is proposed thatallows the selection of noise models and adjustment of their parameters, consideringthe nature of the backends (technology, topology, vendor, model, etc.).The proposed methodology is illustrated using a small superconducting examplebased on the ibm perth backend (seven qubits) and a comparison between thequantum emulators Qaptiva and Qiskit, where six different noise models areapplied, achieving a fidelity deviation of 0.686% at best with respect to the real device.

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Bravo-Montes et al. (2024) studied this question.

synapsesocial.com/papers/68e6191db6db6435875abcaehttps://doi.org/10.21203/rs.3.rs-4575191/v1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Constructing and Benchmarking Noise Models for Quantum Computing2026
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  4. 4Hardware Agnostic Backend Adaptation through Quantum Circuit Evaluation2026
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