Codes, notebooks and data for the computation of the self-energy and vertex renormalization spinfoam amplitudes. The algorithm is based on Monte Carlo simulations.
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Updated
May 12, 2023 - Jupyter Notebook
Codes, notebooks and data for the computation of the self-energy and vertex renormalization spinfoam amplitudes. The algorithm is based on Monte Carlo simulations.
Quantum field theory analysis in curved spacetime geometries. Studies vacuum fluctuations, energy conditions, and field behavior in exotic spacetime configurations for theoretical physics research.
Simulating loop quantum gravity systems, backed with machine learning
PHYS10 poster on algebraic topology for non-holonomic classical mechanics
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.
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.
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A comprehensive Diophantine characterization and exact kernel catalog of the four-valent Loop Quantum Gravity volume operator, including Python scripts for spectral analysis, figure generation, and automated LaTeX table output.
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
Integration of Loop Quantum Gravity with quantum field theory. Studies matter-geometry coupling, polymer field interactions, and quantum gravitational effects on field dynamics.
Production-ready warp field coils with Enhanced Field ↔ LQG Metric Controller integration. Features polymer-enhanced Maxwell equations, real-time field-metric coordination, medical-grade safety, and comprehensive Loop Quantum Gravity corrections.
Loop Quantum Gravity midisuperspace quantization for warp drive spacetimes with constraint implementation, coherent states, lattice refinement, exotic matter quantization, and GPU acceleration
Notebooks and data with practical introduction to numerical computations of spinfoam amplitudes in LQG.
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.
LQG-Enhanced Artificial Gravity with β=1.944 backreaction factor, 94% efficiency, 242M× energy reduction. Production-ready spacetime manipulation for spacecraft.
Codes and notebooks for the application of Markov Chain Monte Carlo in spinfoams. Computation of boundary observables, correlation functions and entanglement entropy.
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.
Revolutionary energy research framework coordinating 37+ repositories for advanced energy technologies, spacetime physics, quantum gravity, and FTL systems. Features Ship Hull Geometry OBJ Framework with zero exotic energy 48c FTL capability.
Codes and notebooks for the computation of the Black-to-White hole transition amplitude and the crossing time in covariant LQG.
Code and notebooks for the computation of the 16-cell spinfoam amplitude, including boundary observables and quantum correlations. The computation is based on MCMC .
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