From topology to first principles.
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Updated
Jun 26, 2026 - HTML
From topology to first principles.
This repository contains the Mathematica files of arXiv:2208.11169
🌌 Modular Substrate Theory (MST): Resolves the H₀ & S₈ cosmological tensions via informational friction. Based on the discrete ℤ₆⁽¹⁾ vacuum symmetry, it derives cosmic impedance from first principles. Repo includes the manuscript, Bayesian validation (ΔBIC=-12.1), & reproducible Jupyter notebooks. 🔭
This repository contains the Python and Mathematica files of our paper
Unified Information-Density Theory v3.9 - Vacuum Information Density as the Fundamental Geometric Scalar: A Proposed Theoretical Framework for the Yang-Mills Mass Gap and Gamma-Scaling Unification
Official repo for the paper: "The Emergence of Geometry". Analytical derivation and 150-digit validation of the identity linking ζ(0), ln 2, and the emergence of spatial geometry within the Z/6Z modular substrate.
This repository contains the Mathematica and MGCAMB files of arXiv:2004.08363
This repository contains the Mathematica files of arXiv:2103.04045
Bayesian MCMC inference of Early Quintessence parameters from Planck 2018 CMB bandpowers
Estimation of the Hubble constant using Gaussian process regression and viable alternatives
Resolving the Hubble Tension via the Temporal Equivalence Principle: Cepheid P-L relation dependence on local potential (Paper 12)
Zx_RieOS_v1.1: Complete zero-parameter Theory of Everything. Z_t = Z + C + A unifies Riemann zeros with GR. Solves Dark Energy, Hubble Tension, Planck Hierarchy. 0 free parameters. DOI: 10.5281/zenodo.19963026
Jabri_RiemannOS: Zero-Parameter Theory of Everything. Complete package with 10 files including Python simulations, numerical data, key equations. Proves Riemann Hypothesis via Zx function. By Abdulla Al-Jabri. DOI:10.5281/zenodo.20145337
This repository contains the Mathematica files of arXiv:2012.13932
An open educational route map for understanding the Hubble tension, including CMB, distance ladders, BAO, SNe Ia, JWST, and DESI. No solution claim.
Official implementation of "The Quantum Loom." We simulate Spacetime as a Discrete Topological Superfluid on IBM Heron (156-qubit) processors to computationally resolve the Hubble Tension, Dark Energy, and the Singularity.
Constraint-shape geometry of cosmological probe disagreements: value/shape structure in the H₀ and S₈ tensions, with a one-command reproduction pipeline.
GEO (Hidden Geometry Framework): exploratory geometric operators, reproducible cosmological tests, GEO-Lens applications, and structural validation studies.
Hubble Tension, Dark Energy, and Quantum Gravity: Unified Resolution via Finite Energy Conservation
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