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