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September 10, 2025Science Advances5 citationsOpen Access

Observation of quantum Darwinism and the origin of classicality with superconducting circuits

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ZZZitian ZhuKSKiera SaliceATAkram Touil

Key Points

  • The research establishes a robust verification of quantum darwinism through observations of quantum states.
  • Quantum mutual information was found to saturate, supporting the emergence of classicality in quantum systems.
  • Superconducting circuits were utilized to observe branching quantum states that underline classical properties.
  • The framework offers insights into the measurement problem, indicating how classical observations arise from quantum principles.

Abstract

The transition from quantum to classical behavior is a central question in modern physics. How can we rationalize everyday classical observations from an inherently quantum world? Quantum Darwinism offers a compelling framework to explain this by proposing that the environment redundantly encodes information about a quantum system, leading to the objective reality. Here, by leveraging cutting-edge superconducting quantum circuits, we observe the highly structured branching quantum states that support classicality and the saturation of quantum mutual information, establishing a robust verification of quantum Darwinism and the underlying geometric structure of quantum states. Additionally, we propose a particular class of observables that can be used as a computationally and experimentally inexpensive quantifier to probe quantum-to-classical transitions. Our investigation delves into how the quantum effects are inaccessible to observers, allowing only classical properties to be detected. It experimentally demonstrates the physical framework through which everyday classical observations emerge from underlying quantum principles and paves the way to settling the measurement problem.

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Cite This Study

Zhu et al. (2025) studied this question.

synapsesocial.com/papers/68c1a78854b1d3bfb60e12cbhttps://doi.org/10.1126/sciadv.adx6857
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