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January 18, 20260 citationsOpen Access

Two-Energy Theory (TDE) v12.0: Dark Matter Yield as a Topological Branching Efficiency

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MSMichał Karol Surowiecki

Key Points

  • The research aims to define boundary conditions for the Two-Energy Theory (TDE) using the dark matter density ratio.
  • Established the cosmological dark matter-to-baryon density ratio using observational data.
  • Introduced topological resonance concepts in the TDE framework.
  • Defined a dimensionless topological barrier parameter to relate to the density ratio.
  • Set conditions for dark matter behavior during structure formation.
  • Mapped the Planck dark matter-to-baryon density ratio into a calibration target.
  • Established the topological barrier parameter value at approximately 1.68.
  • Provided falsification criteria for the dark matter regime under TDE.

Abstract

This chapter establishes an observationally anchored boundary condition for Two-Energy Theory (TDE) v12.0 using the cosmological dark-matter-to-baryon density ratio, Ωc/Ωb ≈ 5.36 (Planck 2018). In the TDE v12.0 interpretation, this ratio is not treated as a fit parameter but as the outcome of an early-Universe topological resonance of the Shadow Field χ into two channels: n = 1 (successful, baryonic topological knots) and n = 0 (unsuccessful, electromagnetically dark energy-localized configurations identified with dark matter). We introduce a minimal dimensionless “topological barrier” parameter, ΔStopo ≡ ln(Ωc/Ωb) ≈ 1.68, which directly maps the Planck ratio into a calibration target to be derived from χ microphysics in later work. The chapter specifies necessary conditions for the n = 0 sector to behave as cold dark matter (effective w ≈ 0 during structure formation), and provides explicit falsification criteria if such a regime cannot be realized or if ΔStopo cannot emerge from reasonable χ microphysics without ad hoc degrees of freedom. A reproducibility package (Python scripts and precomputed outputs) is included to independently verify all numerical anchors and plots.

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Cite This Study

Michał Karol Surowiecki (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d1396785https://doi.org/10.5281/zenodo.18267046
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Also Consider

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

  1. 1Two-Energy Theory (TDE) v12.1 Neutrino–Dark-Matter Link via the Topological Barrier and Local Screening2026
  2. 2Two-Energy Theory (TDE) v13.0: A Resonant EFT with a 4D Topological Barrier Linking Neutrino Mass, Baryonic Mass, and Cosmology2026
  3. 3Based on 9D-USTE v∞: Dark Matter and Dark Energy Topological Interaction Law -- A Falsifiable Physical Model for Cosmological Puzzles2026
  4. 4A Planck-Based Unified Framework for Dark Energy and Dark Matter2026
  5. 5Dark Energy from Topological Sector Imbalance: A Falsiable Prediction from the Pin+ Framework2026