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January 14, 20260 citationsOpen Access

Supplemental Mathematical Derivations and Computational Details for the Graviton Condensate Quantum Gravity Framework

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LGlei guan

Key Points

  • To present mathematical proofs and computational details that support the Graviton Condensate Quantum Gravity framework.
  • Detailed mathematical proofs and numerical calculations presented in five appendices.
  • Groupoid-based proof of Lorentz invariance in discrete spacetime.
  • Numerical integration for fitting coupling constants.
  • Residue theorem treatment of loop integrals for ultraviolet completeness.
  • Renormalization group evolution of core parameters.
  • Confirmed the rigorous mathematical structure of the Graviton Condensate model.
  • Enhanced understanding of coupling constant fitting methods.
  • Established the mathematical consistency of the ultraviolet completion methods.

Abstract

This supplementary document provides detailed mathematical proofs, numerical calculations, and extended derivations supporting the main conclusions of the companion paper titled "Defenses, Self-Consistency Reinforcement, and Experimental Compatibility Verification for Core Controversies in the Graviton Condensate Quantum Gravity Framework." It includes five appendices: a complete groupoid-based proof of Lorentz invariance in discrete spacetime, full-energy-scale coupling constant fitting with numerical integration, topological charge conservation derived from groupoid homology, residue theorem treatment of loop integrals for ultraviolet completeness, and renormalization group evolution of core parameters. These technical supplements are essential for verifying the mathematical rigor and computational consistency of the proposed framework.

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Cite This Study

lei guan (2026) studied this question.

synapsesocial.com/papers/6966f2f013bf7a6f02c00492https://doi.org/10.5281/zenodo.18211030
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