Elasticosmos Regenesis Theory (ERT)
Cyclic Universal Continuity, Information Preservation, and Elastic Vacuum Dynamics
The Elasticosmos Regenesis Theory (ERT) applies the Odero Persistence Framework to cosmological scales. ERT models the cosmos as a self-regulating, elastic thermodynamic continuum that avoids singular breakdown through informational compression and cyclic energy transformation.
Regenesis Balance Condition
$$S_{\text{cosmic}} \le \oint C(I)_{\text{vacuum}} \cdot dE$$
Universal entropy density ($S_{\text{cosmic}}$) is bounded by the cyclical restoration capacity of the vacuum information-energy loop.
Cosmological Dynamics
Key theoretical features of the ERT cosmological model:
- Singularity Resolution: Gravitational collapses reaching density thresholds transition into elastic bounce phases governed by non-zero structural information bounds.
- Information Continuity: Rejects irreversible information loss in black holes by modeling event horizons as high-density information transceivers.
- Cosmological Persistence Index ($\Omega_{\text{cosmo}}$): Evaluates cosmic expansion and contraction cycles under unified thermodynamic constraints.