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May 7, 20260 citationsOpen Access

Linear Law of Quantum Entanglement Decoherence: Derivation Based on Cognitive Succession Ontology

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MLMingxiang Liu

Key Points

  • To explore the ontological basis of quantum entanglement decoherence and propose a new linear model of decoherence.
  • Derived a theoretical model based on Cognitive Succession Ontology.
  • Analyzed the relationship between decoherence and environmental coupling density.
  • Predicted linear correlations in decoherence rate through ontological reasoning.
  • Proposes that quantum entanglement decoherence occurs linearly rather than exponentially.
  • States that decoherence rate is positively correlated with environmental coupling density.
  • Suggests a fundamental contradiction to established quantum mechanics principles.

Abstract

Modern quantum mechanics, based on empirical observations, holds that the quantum entanglement decoherence rate is exponentially correlated with environmental coupling density. This conclusion lacks an ontological foundation and cannot fundamentally resolve the quantum measurement paradox. Based on the original Cognitive Succession Ontology system, this paper takes "the essence of cognition is succession"—the only unfalsifiable first principle within the boundaries of human cognition—as the sole cornerstone. It deduces that the essence of interaction is the transverse coupling between successive sequences, and quantum entanglement is the non-local binding of homologous successive sequences. On this basis, this paper predicts for the first time from the ontological level that quantum entanglement decoherence is a linear process in which entangled sequences are severed one by one by external successive sequences, and the decoherence rate is strictly linearly positively correlated with environmental coupling density, rather than the exponential correlation predicted by traditional theories. This prediction directly contradicts the core conclusion of modern quantum mechanics and can be verified by existing high-precision quantum optics experiments. If the linear decoherence law is confirmed, it will prove that quantum processes are not inherently random, and the probabilistic interpretation of quantum mechanics needs ontological reconstruction.

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Cite This Study

Mingxiang Liu (2026) studied this question.

synapsesocial.com/papers/69fbef86164b5133a91a360ehttps://doi.org/10.5281/zenodo.20040162
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  1. 1Linear Law of Quantum Entanglement Decoherence: Derivation Based on Cognitive Succession Ontology2026
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  5. 5The Methodological Defect of Subjective Appearance Precedence: Universal Problems in Mainstream Quantum, Logical and Cognitive Theories and the Revised Scheme of Ontology-Cognitive Entropy Paradigm2026