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Relational Zero State (RZS) Cosmology

Numerical Implementation and Observational Validation

This repository contains the numerical framework for the Relational Zero State (RZS) cosmological model, as described in the manuscript:

"Relational Zero State: A Scale-Invariant Framework for the Hubble Tension and Early Galaxy Formation" (Ref: DARK-D-26-00136, Physics of the Dark Universe).

🌌 Overview

The RZS model introduces a latency field Φ with non-minimal gravitational coupling to address major cosmological discrepancies. By identifying a spectral stability point at α≈1.5, the model provides a physical mechanism to resolve the Hubble Tension and explains the presence of massive galaxies at high redshifts (z≈10) observed by JWST. 🛠 Repository Structure ⚖️ Calibration & Optimization

RZS_Perfect_Calibration.py: The primary engine used to find the optimal balance between matter-latency coupling (β) and spectral rigidity (λ).

RZS - FINAL CALIBRATION WITH HIGH ENERGY...: A stress-test implementation for high-energy regimes (Vscale​=10,000), ensuring stability and H0​≈73 km/s/Mpc.

rzs_mcmc.py: Scripts for Markov Chain Monte Carlo inference to compare model parameters against cosmological constraints.

🔍 Observational Validation

Located in the /validation directory:

rzs_DESI.py: Validates the model's large-scale connectivity predictions using data from the Dark Energy Spectroscopic Instrument (DESI) BGS Bright sample. It confirms that galaxy clustering aligns with the RZS stability index of α=1.5.

🚀 Getting Started Prerequisites

Python 3.x

numpy, scipy, matplotlib, astropy

Running the DESI Validation

Ensure the BGS_BRIGHT_N_clustering.dat.fits file is available.

Run the analysis:
Bash
python validation/rzs_DESI.py

📈 Key Results

Hubble Constant: H0​≈73.0 km/s/Mpc.

Effective Gravity: Predicts a Geff​(z) evolution that supports early structure assembly.

Network Stability: Confirms α=1.5 as a universal attractor for cosmic web connectivity.

✉️ Contact

Felipe Romero

Relational Zero State: A Scale-Invariant Framework for the Hubble Tension and Early Galaxy Formation (Ref: DARK-D-26-00136, Physics of the Dark Universe). https://doi.org/10.5281/zenodo.18371599 - The Relational Zero State Hypothesis (RZS): Gradient Flow Dynamics and the Emergence of Spacetime Geometry

About

Relational Zero State (RZS) is an exploratory research project by Felipe Romero investigating emergent gravity and cosmological dynamics from relational network principles, with numerical implementations and phenomenological tests against observational data.

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