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February 19, 20260 citationsOpen Access

The Fermionic Universe Hypothesis: A Unified Viscous Condensate Model for Resolving H0, S8, and Early Galaxy Tensions (Project OCEAN)

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ASAlexander Shlyapik

Key Points

  • This work aims to explore the Fermionic Universe Hypothesis as a solution to key cosmological tensions.
  • Introduced the concept of a viscous fermionic condensate (psi-field) in space-time.
  • Calculated specific parameters like particle mass (4.8 keV) and dynamic viscosity (1.2 * 10^-15 Pa·s).
  • Integrated theories of quantum degeneracy pressure and fluid dynamics with cosmological observations.
  • Identified seven empirical pillars that substantiate the Fermionic Universe Hypothesis.
  • Demonstrated a unified framework for addressing dark sector issues.
  • Provided quantitative derivations supporting the central thesis of the model.

Abstract

The Fermionic Universe Hypothesis (FUH) proposes that space-time is not a vacuum but a viscous fermionic condensate (the psi-field) characterized by a particle mass (mₚsi) of 4. 8 keV and a dynamic viscosity (eta) of 1. 2 * 10^-15 Pa·s. By integrating quantum degeneracy pressure, fluid dynamics, and cosmological observation, this framework provides a unified resolution to the "Dark Sector" problems. This document details the seven independent empirical pillars supporting the FUH, supported by quantitative derivations.

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Cite This Study

Alexander Shlyapik (2026) studied this question.

synapsesocial.com/papers/6996a8efecb39a600b3f039fhttps://doi.org/10.5281/zenodo.18675747
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