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A Rheological Approach to the Viscous Fermionic Vacuum Condensate (The complete collection of 6 works)
2026-08-13
This paper presents a 6-part compendium formalizing the physical vacuum as a viscous fermionic condensate (VFC) with a fundamental dynamic viscosity η ≈ 1.2 × 10^-15 Pa•s and a superfluid-to-viscous phase transition at the Shlyapik threshold E_thr = 7.76 keV. The collection systemically unifies key foundational principles and cosmological observations across six dedicated parts: (I) Foundations of VFC flow field and the rheological origin of inertial mass (m = η • τ); (II) Viscous Electrodynamics and the phase transition to superconductivity (η → 0); (III) Galactic Rotation Curves deriving the asymptotic velocity plateau (V f lat) without dark matter; (IV) Relativistic Pericenter Precession of Mercury yielding a secular shift of ∆Φ ≈ 42.98 ′′ /century; (V) Dissipative Dynamics of Gravitational Waves inducing quadratic frequency attenuation (α ∼ f 2); (VI) Black Holes as Superdense Solitons establishing a strict structural compression limit ρ max ≈ 3.49 × 10^17 kg/m^3 .
Ссылка для цитирования:
Shlyapik A. 2026. A Rheological Approach to the Viscous Fermionic Vacuum Condensate (The complete collection of 6 works). PREPRINTS.RU. https://doi.org/10.24108/preprints-3116158
Список литературы
1. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660290Shlyapik (2026).
2. A. Shlyapik, Rheological Approach to the Viscous Fermionic Vacuum Condensate. II. Viscous Electrodynamics, Submitted to J. Exp. Theor. Phys., under review. (2026).
3. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. III. Rheological Nature of Galactic Rotation Curves: Eliminating Dark Matter via ψ-Condensate Viscosity, submitted to J. Exp. Theor. Phys. (2026).
4. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. IV. Relativistic Pericenter Precession of Mercury via ψ-Condensate Drag, soon... (2026).
5. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. V. Dissipative Dynamics of Gravitational Waves in a Viscous Fermionic Condensate (ψ-field), soon... (2026).
6. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. Part VI. Rheological Density Limits and Black Hole Shadows in the Viscous Condensate Model, soon... (2026).