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A Rheological Approach to the Viscous Fermionic Vacuum Condensate (The complete collection of 6 works)
2026-08-29
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 . All the papers on this list have undergone rigorous peer review at JETP and will be published this year.
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, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660315Shlyapik. (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, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660330Shlyapik.(2026).
4. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. IV. Relativistic Pericenter Precession of Mercury via ψ-Condensate Drag, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660352Shlyapik.(2026).
5. A. Shlyapik, A Rheological Approach to the Viscous Fermionic Vacuum Condensate. V. Dissipative Dynamics of Gravitational Waves and Rheological Density Limits and Black Hole Shadows in the Viscous Condensate Model, J. Exp. Theor. Phys., (accepted, in press), Manuscript ID: JETP2660359Shlyapik.(2026).