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January 16, 20260 citationsOpen Access

Early–Time Dynamics of Physical Time in a Non–Stationary Quantum Vacuum

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KSKolesnik Sergey

Key Points

  • The study aims to investigate the dynamics of physical time in the early Universe influenced by a non-stationary quantum vacuum.
  • Analyzed the Quantum Model of the Universe framework
  • Examined the impact of rapid vacuum evolution and phase transitions
  • Assessed consistency with general relativity and observational limits
  • Identified non-trivial dynamics of physical time during early epochs
  • Proposed that temporal scales may not have been constant
  • Suggested that vacuum relaxation leads to stabilization of physical time at later stages

Abstract

Preprint. This manuscript is a preprint and has not been peer-reviewed. It is currently under consideration for publication in a peer-reviewed journal. AbstractThe remarkable stability of physical time observed in the present–day Universe stands in sharpcontrast with the extreme dynamical conditions that characterized its earliest cosmological epochs.In this work, we investigate the possibility that physical time exhibited nontrivial dynamics in theearly Universe as a natural consequence of a highly non–stationary quantum vacuum.Within the framework of the Quantum Model of the Universe, physical time is interpreted as anemergent effective parameter determined by the vacuum–metric state. We argue that during epochsdominated by rapid vacuum evolution, phase transitions, and strong curvature, the temporal scalegoverning physical processes need not have been constant. We show that such early–time temporaldynamics can be consistently incorporated without violating general relativity, local causality, orcurrent observational bounds, provided that vacuum relaxation leads to temporal stabilization at latetimes.This framework provides a coherent physical interpretation of early–Universe non–stationaritywhile preserving the observed robustness of physical time in the present epoch. key words: Emergent physical time, vacuum–metric dynamics, quantum vacuum, early Universe, temporal non-stationarity, vacuum relaxation, cosmological stabilization, Quantum Model of the Universe (QMU), effective parameters, general relativity consistency, observational constraints, late-time cosmology

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Cite This Study

Kolesnik Sergey (2026) studied this question.

synapsesocial.com/papers/6969d44b940543b977709383https://doi.org/10.5281/zenodo.18248112
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Also Consider

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

  1. 1Physical Time as an Emergent Vacuum–Metric Parameter in Cosmological Evolution2026
  2. 2Vacuum Relaxation as a Unifying Mechanism for Cosmological Stability2026
  3. 3Emergent Time from Discrete Quantum Updates: A Globally Conservative Framework for Quantum Evolution and Temporal Emergence2026
  4. 4Emergent Spacetime and Macroscopic Determinism: The Quantum Vacuum as a Chaotic Substrate2026
  5. 5Vacuum Relaxation and the Effective Status of the Cosmological Constant in Late–Time Cosmology2026