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The TARDIS/PlanckDynamics framework demonstrates that all fundamental properties of matter (mass, charge, spin) and all fundamental forces (gravitational, electromagnetic, strong) emerge from holographic thermodynamics and topological constraints.
Framework de physique théorique unifiant Relativité, Mécanique Quantique et Thermodynamique via la Géométrie de l'Information (Métrique de Fisher/Ruppeiner). Une approche moniste où la réalité émerge de la compression informationnelle (κ).
The EntropicGravity-Py library implements a high-performance N-Body simulation engine that replaces the standard Newtonian potential with Erik Verlinde's Entropic Force model. The goal is to audit whether the observed "mass discrepancies" in galaxies can be naturally explained by the thermodynamics of spacetime info-dynamics.
This repository contains the source code, derivations, and manuscripts for the TARDIS (Topological Analysis of Recursive Dimensional Information Systems) framework. This work proposes a phenomenological extension to the Standard Model of particle physics and Cosmology, based on a single Postulate of Holographic Compression. We explore the hypothes
Déconstruction de l'entropie comme complexité géométrique cachée. De l'effacement de l'information (Landauer) à la gravité émergente (Holographie) et aux structures fractales ($\phi$). Un manifeste pour une physique "Information-First". 📐⚛️
Regolith Observatory for Kaluza-Klein Yield (ROCKY) — Artemis II and the Emergent Cosmos: Gravity as a Geometric Projection from a Non-Linear Compactified 5D Manifold. A synthesis and lunar test proposal with a 150 kg dual-species atom-interferometer payload for the lunar South Pole. Zenodo DOI: https://zenodo.org/records/19790009
To synthesize the findings of the TARDIS Framework into a single, cohesive Theory of Everything. Throughout this research program, we have systematically replaced abstract "forces" and "parameters" with geometric and topological principles.
To simulate and validate the existence of a universal critical mass scale ( M c ) where quantum superpositions naturally collapse due to entropic gravity / information horizon fluctuations.
This project generates the largest and most detailed dark matter map from the Cosmic Microwave Background (CMB) using data from the Atacama Cosmology Telescope (ACT). It leverages advanced gravitational lensing reconstruction algorithms and high-performance computing to visualize the invisible mass distribution across the universe.
We propose the existence of a fundamental mass scale, M c ≈ 5.3 × 10 − 16 kg, where quantum unitarity is spontaneously violated due to interaction with the cosmological acceleration horizon.
To solve the Cosmological Constant Problem (the 120-order-of-magnitude discrepancy between QFT prediction and observation) by re-deriving Λ as a holographic surface term rather than a bulk volumetric energy.
HubbleRgbProcessor is an intelligent system designed to retrieve real astronomical data from the Hubble Space Telescope, generate professional RGB photometric composites, and enhance images using the Gemini 2.5 Flash Image model via a unified Gradio interface.
A computational framework demonstrating Erik Verlinde's entropic gravity theory to resolve galactic rotation curves without dark matter. The project simulates gravitational emergence from entropy gradients, validating theoretical physics models.