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February 25, 20260 citationsOpen Access

Why Dark Matter Is Five Times Baryonic Matter: A CPT-Symmetric Two-Sector Cosmology, TDEC 2.1

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MLMichael Lehmann

Key Points

  • This research aims to explore dark matter's relationship with baryonic matter within a CPT-symmetric cosmological framework.
  • Formulation within standard Einstein gravity and a single complex scalar field
  • Utilization of a globally CPT-symmetric framework with two sectors
  • Derivation of predictions for gravitational waves and cosmological parameters
  • Dark matter is confirmed as five times the amount of baryonic matter
  • Predictions include a gravitational-wave background at 10^{-3}–10^{-2} Hz
  • Estimates of 21-cm modulations at 0.2–0.3 %
  • Deviations of ΔN_eff ∼ 0.1–0.3
  • Percent-level corrections to fσ8(z)

Abstract

Why Dark Matter Is Five Times Baryonic Matter: A CPT-Symmetric Two-Sector Cosmology, TDEC 2. 1, is a minimal, nonsingular and fundamentally timeless cosmological framework formulated within standard Einstein gravity and a single complex scalar field. The theory is globally CPT-symmetric. Time, entropy production, causal structure, the arrow of time, dark energy (as slow vacuum relaxation with w > −1), dark matter (as CPT-conjugate mirror-sector baryons) and the baryon asymmetry all emerge as sectoral thermodynamic projections of a single underlying static, Bell-like entangled spacetime geometry defined on a two-dimensional warped-product manifold. No inflation, no modified gravity, no ultraviolet bounce corrections and no additional degrees of freedom are required. The two sectors remain permanently entangled in a static equilibrium, stabilised by a weak gravitationally mediated relaxation parameter α that acts as a continuous dissipative stabiliser (analogous to weak monitoring that preserves a Bell state). The framework yields concrete, falsifiable predictions including a characteristic stochastic gravitational-wave background at 10^-3–10^-2 Hz, 21-cm modulations at the 0. 2–0. 3 % level, deviations ΔNₑff ∼ 0. 1–0. 3, and percent-level corrections to fσ8 (z). It constitutes a highly testable, self-contained alternative to ΛCDM in which the entire cosmic evolution is the asymptotic equilibrium state of a single timeless, maximally entangled geometric structure. Full derivation of the UV geometry, effective field theory, background dynamics, linear and nonlinear perturbations, mirror-sector phenomenology and quantitative observational forecasts are included. Michael Lehmann @mi. lehmann@gmx. de

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Cite This Study

Michael Lehmann (2026) studied this question.

synapsesocial.com/papers/699e919cf5123be5ed04f4d2https://doi.org/10.5281/zenodo.18749387
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