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March 17, 20260 citationsOpen Access

Gravity as Deformation of a Correlated Vacuum Medium

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DVDmytro Voronkevych

Key Points

  • This work aims to establish a theory where gravity arises from the deformation of a correlated quantum vacuum, rather than from traditional sources.
  • Proposed a field-theoretic framework treating vacuum as a correlated medium.
  • Examined the vacuum's finite correlation length and relaxation dynamics.
  • Tested predictions against empirical data from galactic rotation curves and lensing phenomena.
  • Reproduced Newtonian gravity at small scales with modified dynamics at galactic scales.
  • Showed compatibility with observations such as the Tully–Fisher relation and Bullet Cluster offset.
  • Discussed implications for Hubble expansion and void dynamics in the universe.

Abstract

This work proposes a field-theoretic framework where gravitation emerges from the deformation of a correlated quantum vacuum. By treating the vacuum as a physical medium with a finite correlation length λ and specific relaxation dynamics, the theory reproduces Newtonian gravity at small scales and modified dynamics (MOND-like behavior) at galactic scales without the need for non-baryonic dark matter. The framework is tested against galactic rotation curves, the Tully–Fisher relation, gravitational lensing, and the Bullet Cluster offset. Cosmological implications, including Hubble expansion and void dynamics, are discussed.

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Cite This Study

Dmytro Voronkevych (2026) studied this question.

synapsesocial.com/papers/69b8f12fdeb47d591b8c60behttps://doi.org/10.5281/zenodo.19033749
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