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Quantum Darwinism: Entanglement, branches, and the emergent classicality of redundantly stored quantum information

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arxiv quant-ph/0505031 v2 pith:QZTQIA3B submitted 2005-05-06 quant-ph

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keywords informationstatesredundancyconsistingmodelquantumsystemclassical
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We lay a comprehensive foundation for the study of redundant information storage in decoherence processes. Redundancy has been proposed as a prerequisite for objectivity, the defining property of classical objects. We consider two ensembles of states for a model universe consisting of one system and many environments: the first consisting of arbitrary states, and the second consisting of ``singly-branching'' states consistent with a simple decoherence model. Typical states from the random ensemble do not store information about the system redundantly, but information stored in branching states has a redundancy proportional to the environment's size. We compute the specific redundancy for a wide range of model universes, and fit the results to a simple first-principles theory. Our results show that the presence of redundancy divides information about the system into three parts: classical (redundant); purely quantum; and the borderline, undifferentiated or ``nonredundant,'' information.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Demystifying Objectivity with Operator Algebra Quantum Error Correction

    quant-ph 2026-06 unverdicted novelty 5.0 of 10

    Objectivity emergence in quantum Darwinism is identified with algebraic local recoverability in quantum codes, yielding precise characterization for stabilizer codes.

  2. Spacetime and Universal Soft Modes --- Black Holes and Beyond

    hep-th 2019-08 conditional novelty 5.0 of 10

    The paper argues that black hole interiors, Rindler horizons, and de Sitter horizons all emerge from coarse-graining soft modes of low-energy fields, selected by the Born rule.

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