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May 7, 20260 citationsOpen Access

Unifying Informational Dynamics II: Topological Bootstrap, Absolute Calibration, and the Emergence of Gravity on SU(2) × U(1) Bundles

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GMGianluca Monna

Key Points

  • The aim is to describe the emergence of gravity through a unified framework of relational dynamics in specific bundle structures.
  • Integrating kinematic foundations with geometric topology.
  • Analyzing the relationship between vacuum impedance, stiffness, and fundamental constants.
  • Calibrating the lattice scale using neutron mass and gravitational constant.
  • Gravity and inertia emerge as topological outcomes of a discrete relational lattice.
  • The framework eliminates circular reasoning and includes no free parameters beyond the scale.
  • Demonstrates the analytical determination of stiffness based on vacuum impedance.

Abstract

This work presents the complete analytical architecture of Unifying Informational Dynamics (UID), describing physical reality as the emergence of a discrete relational lattice based on the SU(2) × U(1) bundle. By integrating kinematic foundations with geometric topology, we solve the genesis of fundamental constants through a Topological Bootstrap: the vacuum impedance α₀⁻¹ analytically determines the stiffness κ, eliminating logical circularity. Using the neutron mass mₙ and the gravitational constant G as the sole phenomenological anchors to calibrate the absolute lattice scale (l₀), we demonstrate that gravity, inertia, neutron decay, and the mass hierarchy emerge rigorously as topological and variational consequences of a single discrete relational lattice. Thanks to the Topological Bootstrap and unitary calibration, the framework is closed and free of free parameters beyond the single scale l₀.

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Cite This Study

Gianluca Monna (2026) studied this question.

synapsesocial.com/papers/69fbe3ca164b5133a91a3030https://doi.org/10.5281/zenodo.20044248
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