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July 5, 20260 citationsOpen Access

Intrinsic Reconstruction of Information-Emergent Spacetime Theory: An Autonomous Framework of Quantum Gravity Based on Discrete Exterior Calculus, Forman-Ricci Curvature, and Spectral Geometry

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ZZZhen ZhangXYXin Yang

Key Points

  • The aim is to create a mathematical framework for Information-Emergent Spacetime Theory (IEST) that minimizes dependence on classical models.
  • Established an axiomatic framework for IEST without smooth classical backgrounds.
  • Utilized discrete exterior calculus to model a directed 1-cell complex capturing localized information flux.
  • Derived dynamics from the Principle of Minimum Entropy Action with constraints and explored the emergent aspects of Einstein's equations.
  • Einstein's field equations were shown to arise from the self-organization of decentralized network flow.
  • Determined the evolution of Stochastic Topological Noise (STN) as a basis for future observational predictions.
  • Established a positive-definite discrete Hodge star operator to address mathematical vulnerabilities.

Abstract

This paper establishes a rigorous, intrinsic mathematical axiomatic framework for the Information-Emergent Spacetime Theory (IEST), largely alleviating phenomenological presuppositions that rely on smooth classical backgrounds or continuous manifold embeddings. Utilizing Discrete Exterior Calculus (DEC), we characterize the microscopic reality as a directed 1-cell complex, where localized information flux is defined as a discrete 1-form. The underlying dynamics of the system are driven by the Principle of Minimum Entropy Action (PLEA) under coordinate-free constraints. The topological resistance is established as the matrix element of a positive-definite discrete Hodge star operator, providing a rigorous resolution to the mathematical vulnerability of non-positive definiteness in un-embedded networks. We demonstrate that Einstein's field equations spontaneously emerge as the topological self-balancing condition of decentralized network flow self-organization. Finally, we derive the explicit dynamical evolution equation of Stochastic Topological Noise (STN), yielding deterministic falsifiable phenomenological pathways across macroscopic astrophysical observations.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a49f60bf5d1d45b28800aa2https://doi.org/10.5281/zenodo.21157422
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