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April 1, 20260 citationsOpen Access

Black Holes, Quantum Gravity, and Cosmological Predictions in the ``Information = Matter'' Unified Theory Geometric Structures, Observables, and Testable Signatures

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YLY. Li

Key Points

  • This research explores the link between information theory and gravitational phenomena to formulate new theoretical models.
  • Developed information-corrected black hole metrics
  • Derived information-geometric formulations for quantum gravity
  • Modified Friedmann equations to explore dark sector phenomenology
  • Presented table-based predictions for cosmological parameters and observables
  • Introduced new equations for black hole dynamics and thermodynamics
  • Formulated predictions for cosmological parameters that align with observational data
  • Outlined theoretical frameworks for understanding the dark sector in cosmology

Abstract

This extended paper develops the black hole sector, quantum gravity regime, cosmological predictions, and observational testability of the ``information = matter'' unified theory constructed in the previous works. Starting from the information--Einstein equation and its quantum extensions, we derive: (i) information-corrected black hole metrics and horizon thermodynamics; (ii) an information-geometric formulation of quantum gravity via path-integral measures on information manifolds; (iii) modified Friedmann equations and effective dark sector phenomenology; and (iv) concrete, table-based predictions for cosmological parameters and astrophysical observables, suitable for comparison with current and future data. All derivations are explicit and rigorous, and several new original equations (1--12) are introduced to encode the extended structure.

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Cite This Study

Y. Li (2026) studied this question.

synapsesocial.com/papers/69ccb76c16edfba7beb89661https://doi.org/10.5281/zenodo.19327725
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