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February 6, 20260 citationsOpen Access

From compatibility of measurements to exploring Quantum Darwinism on NISQ

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EDEmery DoucetSDSebastian Deffner

Key Points

  • This work aims to explore how Quantum Darwinism affects measurements and reveals non-classical behaviors in specific models.
  • Analyzed a particular model to observe breaking of Quantum Darwinism.
  • Studied measurement statistics related to the quantum framework.
  • Benchmarking was performed on NISQ hardware from IonQ and IBM.
  • Identified conditions under which classical behavior emerges from quantum models.
  • Demonstrated tools for assessing genuine quantum characteristics of NISQ systems.

Abstract

Quantum Darwinism explains how tenets of classical reality, such as objectivity and repeatability, emerge within a quantum universe. As a mathematical framework, Quantum Darwinism also provides guiding principles that determine what physical models support emergent classical behavior, what specific observables obey classical laws, and much more. For instance, in a recent work we elucidated that the limit under which Kirkwood-Dirac quasiprobability distributions become effectively classical coincides with the regime where the underlying physical model obeys the rules of Quantum Darwinism. In the present work, we study the breaking of Quantum Darwinism in a specific model and how that translates to non-classical measurement statistics. Interestingly, this provides effective tools for benchmarking the genuine quantum characteristics of NISQ hardware, which we demonstrate with IonQ's trapped-ion and IBM's superconducting quantum computing platforms.

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Cite This Study

Doucet et al. (2026) studied this question.

synapsesocial.com/papers/698585aa8f7c464f2300938fhttps://doi.org/10.13016/m2cgnn-wsiz
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