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February 11, 20260 citationsOpen Access

ψ-Retention Cosmology: A Field-Theoretic Architecture of Structural Persistence Beyond Dynamical Decay

LYLogacheva Yulia

Key Points

  • This research develops a theoretical framework to explain structural persistence in cosmology beyond traditional decay models.
  • Introduces ψ-Retention framework with retentive node and equilibrium term
  • Derives retentive Lagrangian and potential dynamics
  • Explores stationary solutions and dimensional constraints
  • Analyzes stability features from cosmological surveys
  • Identifies structural persistence through conservation of difference
  • Explains correlation-time plateaus and low-frequency relics observed in surveys
  • Presents coherent mechanisms for persistent lensing configurations that challenge ΛCDM predictions

Abstract

ψ-Retention Cosmology introduces a minimal field-theoretic framework in which structural persistence arises from the conservation of difference (Δψ), supported by a finite retentive node (Ξ) and an equilibrium term (Λψ). The theory explains stability features observed in recent high-precision cosmological surveys, including correlation-time plateaus, residual low-frequency relics, and persistent lensing configurations that exceed the predictions of ΛCDM. We derive the retentive Lagrangian, potential, Euler–Lagrange dynamics, stationary solutions, dimensional constraints, operational invariants, and a ψ-phase diagram valid even in pre-geometric regimes where spacetime metrics collapse. ψ-Retention Cosmology establishes Retention Physics as a formal scientific discipline and provides a coherent description of structural survival beyond dynamical decay.

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Cite This Study

Logacheva Yulia (2026) studied this question.

synapsesocial.com/papers/698c1c53267fb587c655ea56https://doi.org/10.5281/zenodo.18559739
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