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February 22, 20260 citationsOpen Access

Holographic Eschatology: The Big Bounce, Information Preservation, and the Cyclic Fate of the Universe

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EGEmiliano G. Greco

Key Points

  • The study aims to address the initial singularity and information paradox in cosmology using holographic models.
  • Developed a UV-complete cosmological framework under the Holographic Corq Model.
  • Extended T-Duality symmetry of string theory into complex time.
  • Calculated Ryu–Takayanagi holographic entropy to prove unitarity during the bounce.
  • Identified the topological origin of matter linked to the bounce geometry.
  • Established a non-singular Holographic Bounce replacing the traditional Big Bang.
  • Proved the information capacity remains positive during the transition, SHEE > 0.
  • Predicted a transient cosmic acceleration leading to a Cyclic Universe.
  • Derived a falsifiable 'Dual Spectrum' of gravitational waves with observable peaks.

Abstract

We present a UV-complete cosmological framework that resolves the initial singularity and the information paradox within the Holographic Corq Model. By extending the T‑Duality symmetry of string theory to the complex time domain, we demonstrate that the Big Bang is replaced by a non‑singular Holographic Bounce at a minimum radius Rmin ∼ √α′. We prove the unitarity of this transition by calculating the Ryu–Takayanagi holographic entropy, showing that the information capacity of the universe remains strictly positive, SHEE > 0, across the bounce. Furthermore, we identify the origin of matter as a topological necessity: the spectral flow induced by the bounce geometry generates a net winding number shift of ΔNCS = 3, providing the irreducible chiral seed for the three generations of the Standard Model. Connecting with the “walking dynamics” derived in previous work (ε ≈ 0.0318), we argue that the current cosmic acceleration is transient, predicting a Cyclic Universe that avoids the heat death. The model yields a falsifiable “Dual Spectrum” of gravitational waves—a low‑frequency acoustic peak observable by LISA and a high‑frequency confinement signal accessible to DECIGO—offering a definitive experimental signature of the pre‑Big‑Bang era.

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Cite This Study

Emiliano G. Greco (2026) studied this question.

synapsesocial.com/papers/699a9e2d482488d673cd4b2chttps://doi.org/10.5281/zenodo.18708226
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