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March 14, 20260 citationsOpen Access

The Breathing Universe: 207 Coherent Wave Structures in Dynamical Media

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ICIvo Gerlach Angela Noel Cerfontaine

Key Points

  • The aim is to investigate vacuum-tension dynamics in cosmology using the Breathing Universe framework.
  • Developed a cosmological model extending effective field theory principles.
  • Analyzed dynamics under a homogeneous and isotropic background.
  • Derived evolution equations for vacuum-tension dynamics and its contributions.
  • Identified different cosmological regimes influenced by scalar potential and expansion rates.
  • Demonstrated vacuum-tension field can affect late-time cosmic acceleration.
  • Showed model's compatibility with Friedmann equations and general covariance.

Abstract

This paper develops a cosmological extension of the effective field formulation of vacuum-tension dynamics within the Breathing Universe framework. The analysis investigates how the scalar order parameter H(x), previously introduced as a coarse-grained measure of vacuum-tension imbalance relative to the canonical zero-line equilibrium, evolves on cosmological scales in an expanding universe. Using a homogeneous and isotropic background geometry, the vacuum-tension field is treated as a spatially uniform scalar degree of freedom whose dynamics are governed by the covariant scalar–tensor effective action derived in earlier work. The coupled scalar and gravitational field equations are specialized to a cosmological background, yielding evolution equations for the time-dependent vacuum-tension background H(t) and its contribution to the cosmic energy–momentum budget. The analysis shows that vacuum-tension dynamics can produce distinct cosmological regimes depending on the effective parameters of the scalar potential and the background expansion rate. In particular, the vacuum-tension field may behave as a slowly varying background component capable of influencing late-time cosmic acceleration while remaining compatible with the effective field theory interpretation of gravity. The framework preserves general covariance and reduces to the standard Friedmann evolution equations when the vacuum-tension field approaches the zero-line equilibrium. The resulting cosmological dynamics provide a bridge between the local vacuum-tension formulation and large-scale cosmic evolution. The model generates testable consequences through its impact on the expansion history of the universe and on the propagation of gravitational waves across cosmological distances, thereby connecting vacuum-tension dynamics with observational cosmology.

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Cite This Study

Ivo Gerlach Angela Noel Cerfontaine (2026) studied this question.

synapsesocial.com/papers/69b4b9eb18185d8a398021aehttps://doi.org/10.5281/zenodo.18989296
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Also Consider

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

  1. 1The Breathing Universe: 207 Coherent Wave Structures in Dynamical Media2026
  2. 2The Breathing Universe: 704 Cosmological Evolution of the Scalar Vacuum-Tension Background2026
  3. 3The Breathing Universe: 308 Minimal Dynamical Core of the Breathing Universe2026
  4. 4The Breathing Universe: 707_From Vacuum Processes to Effective Field Theory2026
  5. 5The Breathing Universe: 209_Relaxation Toward Vacuum Balance2026