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August 1, 2026Open Access

Emergent Temporal Asymmetry: Observer-System Entanglement within a Timeless Global Wave Function

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ZTZafere Zeki Tanrıverdi

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Overview

This theoretical paper explores how temporal asymmetry emerges from observer-system correlations in quantum cosmology, highlighting implications for the understanding of time.

Key Points

  • This work aims to explain how temporal asymmetry arises not from fundamental laws but from the interaction between observers and the universe.
  • Proposes a relational framework using the Page–Wootters mechanism and quantum decoherence theory.
  • Analyzes observer-system correlations and entropy production during record formation.
  • Examines the implications of Landauer's principle in understanding irreversibility.
  • Demonstrates that time appears unidirectional for internal subsystems while the overall global state remains static.
  • Shows that irreversibility is an emergent feature resulting from quantum entanglement and decoherence, not a violation of symmetry.

Cite This Study

Zafere Zeki Tanrıverdi (2026) studied this question.

synapsesocial.com/papers/6a6da778e258b358b3c6c898https://doi.org/10.5281/zenodo.21698375
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Also Consider

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

  1. 1Emergent Temporal Asymmetry: Observer-System Entanglement within a Timeless Global Wave Function2026
  2. 2The Observer as a Local Breakdown of Atemporality2026
  3. 3Quantum Field Theory of Time2026
  4. 4Quantum Field Theory of Time: The Weak Entanglement Symmetry Hypothesis2026
  5. 5Emergent Time from Discrete Quantum Updates: A Globally Conservative Framework for Quantum Evolution and Temporal Emergence2026