PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 31, 20262 citationsOpen Access

A Unified Field Theory Based on Superdense Ether: Topological Solitons, Two-Mode Gravity, and Experimental Predictions

View Full Paper
JJJens Jensen

Key Points

  • This research aims to develop a unified field theory by interpreting the vacuum as a superdense ether, explaining various fundamental interactions.
  • Introduces a model where particles are topological solitons within the ether medium
  • Separates gravitational interactions into instantaneous and propagating modes
  • Predicts experimental outcomes related to gravitational and acoustic phenomena
  • Proposes a laboratory protocol to test dielectric permittivity changes
  • Predicts a deviation of the Shapiro parameter γ from unity at 2×10^-5
  • Reconciles Newtonian gravity with the propagation of gravitational waves
  • Addresses issues of quantum entanglement and dark matter
  • Establishes a deterministic foundation for quantum mechanics

Abstract

This work presents a deterministic field theory in which the physical vacuum is interpreted as a superdense (ρE ≈ 10¹3 kg/m³), superfluid, and practically incompressible medium — the ether. Material particles (electrons, nucleons) are treated as stable topological solitons — Hopf knots — within this medium. Particle mass is proportional to the Hopf invariant H, naturally explaining mass quantization. All fundamental interactions emerge from a unified hydrodynamics of the ether: gravity as a pressure gradient, electromagnetism as transverse waves (shear), and nuclear forces as topological entanglement of ether filaments. The model introduces a separation of gravitational interaction into longitudinal (instantaneous, c_∥ → ∞) and transverse (propagating at speed c) modes. This reconciles the instantaneous nature of the Newtonian potential with LIGO observations detecting gravitational waves propagating at c. A deviation of the Shapiro parameter γ from unity at the level of 2×10^-5 is predicted, testable with SKA and LISA. A laboratory protocol is developed to test the key prediction: anomalously long relaxation of water's dielectric permittivity following resonant acoustic excitation, attributed to the rearrangement of molecular topological structure. The theory resolves major conceptual issues of the standard model and general relativity: quantum entanglement nonlocality (explained by instantaneous longitudinal ether tension), dark matter and dark energy (interpreted as excess topological density and ether pressure), and singularities (replaced by limiting topological density). The model provides a deterministic substrate foundation for quantum mechanics, restoring causality in its classical understanding.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Jens Jensen (2026) studied this question.

synapsesocial.com/papers/69cb6556e6a8c024954b96cdhttps://doi.org/10.5281/zenodo.19310352
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1Unified Field Theory Based on a Superdense Ether: Topological Solitons, Instantaneous Information Transfer, and the Emergence of Quantum Mechanics(Mathematical supplement))2026 · 2 citations
  2. 2Unified Field Theory Based on a Superdense Ether: Topological Solitons, Mass Spectrum, Quantum Emergence, and Unified Density Scale β = 10⁻⁴2026
  3. 3Empirical Confirmations of the Superdense Ether Theory: A Comparative Analysis with Plasma MHD, Topological Solitons, and Laboratory Observations (1980–2026)2026
  4. 4Space as an Ether Crystal:A Unified Model of Gravity, Electromagnetism, Light, and Matter by Ors Marton2026
  5. 5Unifying Theory of Dynamic Aether Mechanics2021