Simulating loop quantum gravity systems, backed with machine learning
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Updated
Jul 27, 2025
Simulating loop quantum gravity systems, backed with machine learning
Codes, notebooks and data for the computation of the self-energy and vertex renormalization spinfoam amplitudes. The algorithm is based on Monte Carlo simulations.
First complete first-principles derivation of Newton's gravitational constant G from Loop Quantum Gravity with 100% theoretical completeness through resolved vacuum selection problem and comprehensive uncertainty quantification framework
PHYS10 poster on algebraic topology for non-holonomic classical mechanics
UQ-Validated Physics-Based Matter Replication and Recycling System with Polymerized-LQG 484x enhancement, 1.1x energy balance, 99.9% fidelity, complete UQ remediation and medical-grade safety protocols
Polymer-enhanced fusion simulation framework studying LQG physics integration with tokamak systems. Includes HTS materials modeling, coil optimization, liquid metal divertors, and economic analysis for fusion energy research.
Discrete spacetime volume quantization controller using SU(2) representation theory for quantum gravity applications. Features eigenvalue precision ≤10⁻¹², polymer enhancement integration, and cross-repository LQG framework compatibility.
Framework for applying polymer quantization to Grand Unified Theories (GUTs). Extends closed-form SU(2) recoupling to unified gauge groups (SU(5), SO(10), E6), enabling simultaneous enhancement across all charge sectors.
Quantum field theory analysis in curved spacetime geometries. Studies vacuum fluctuations, energy conditions, and field behavior in exotic spacetime configurations for theoretical physics research.
FTL metric engineering framework with energy optimization and warp field calculations. Includes geometric optimization, field concentration systems, and UQ resolution validation.
Energy research framework coordinating 54 repositories for energy technologies, spacetime physics, quantum gravity, and FTL systems. Features Ship Hull Geometry OBJ Framework with zero exotic energy 48c FTL capability.
First-principles derivation of the fine-structure constant from Loop Quantum Gravity achieving exact CODATA precision α = 7.2973525643×10⁻³ with comprehensive uncertainty quantification
Loop Quantum Gravity midisuperspace quantization for warp drive spacetimes with constraint implementation, coherent states, lattice refinement, exotic matter quantization, and GPU acceleration
Advanced LQG Polymer Field Generator with Enhanced Simulation Framework integration. Production-ready spacetime discretization control with dynamic backreaction optimization and cross-system SU(2) synchronization. ⊕ >10¹² enhancement factor ⊕ 15-25% efficiency gains ⊕ Real-time adaptive control
Revolutionary Loop Quantum Gravity framework with 48c Supraluminal Navigation System. Production-ready FTL technology with zero exotic energy requirements and 24.2 billion× sub-classical energy enhancement through LQG polymer corrections.
Codes and notebooks for the application of Markov Chain Monte Carlo in spinfoams. Computation of boundary observables, correlation functions and entanglement entropy.
Notebooks and data with practical introduction to numerical computations of spinfoam amplitudes in LQG.
LQG-Enhanced Artificial Gravity with β=1.944 backreaction factor, 94% efficiency, 242M× energy reduction. Production-ready spacetime manipulation for spacecraft.
Analysis of Averaged Null Energy Condition violations in Loop Quantum Gravity. Studies energy condition constraints, quantum field behavior, and spacetime energy density bounds in quantum gravitational contexts.
I've discuss how our understanding of space and time might will shift, considering ideas from string theory to loop quantum gravity.
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