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Main Author: Frolov, Gleb
Format: Recurso digital
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Published: Zenodo 2025
Online Access:https://doi.org/10.5281/zenodo.16383303
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author Frolov, Gleb
author_facet Frolov, Gleb
contents <p>This work presents the complete Fractal Quantum Network (FQN) theory, where spacetime and matter emerge from a dynamic fractal network with dimension $d_f$. Key innovations include:</p> <p><br>- Emergent Lorentz invariance via $\text{Aut}(K)/\text{Isom}(d_f) \to \text{Poincaré}$ at $d_f \to 4$</p> <p>- Quantum entanglement as direct three-point interaction in the network</p> <p>- First-principles derivation of Standard Model from $H_2(K,\mathbb{Z})$ topology</p> <p>- Experimentally falsifiable predictions with uncertainty bounds</p> <p>The theory is mathematically rigorous (6 theorems), computationally verified, and ready for experimental testing.</p>
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spellingShingle Fractal Quantum Network: Complete Unification of Spacetime and Matter
Frolov, Gleb
<p>This work presents the complete Fractal Quantum Network (FQN) theory, where spacetime and matter emerge from a dynamic fractal network with dimension $d_f$. Key innovations include:</p> <p><br>- Emergent Lorentz invariance via $\text{Aut}(K)/\text{Isom}(d_f) \to \text{Poincaré}$ at $d_f \to 4$</p> <p>- Quantum entanglement as direct three-point interaction in the network</p> <p>- First-principles derivation of Standard Model from $H_2(K,\mathbb{Z})$ topology</p> <p>- Experimentally falsifiable predictions with uncertainty bounds</p> <p>The theory is mathematically rigorous (6 theorems), computationally verified, and ready for experimental testing.</p>
title Fractal Quantum Network: Complete Unification of Spacetime and Matter
url https://doi.org/10.5281/zenodo.16383303