simulatorCosmology

Galaxy Rotation Simulator

Simulate galaxy rotation curves with and without α-field contributions.

galaxiesrotationdark-matter

Interactive Tool

The interactive simulator will be rendered here. This tool allows you to explore galaxy rotation simulator through hands-on interaction.

Overview

Simulate galaxy rotation curves with and without α-field contributions.

This interactive tool allows you to explore galaxy rotation simulator through hands-on calculation and visualization.

How It Works

Simulator Mode

Set initial conditions and run the simulation to see how the system evolves according to SCU dynamics.

Inputs

Visible MassTotal visible matterM☉1e11
Galaxy RadiusGalaxy extentkpc30
α-Field EffectInclude α-field contributiontrue

Outputs

  • Rotation Curve: Orbital velocity vs radius
  • Mass Profile: Enclosed mass vs radius

The Mathematics

The tool implements these core SCU equations:

Master Equation M1 (Geometry):

G_{\mu\nu} = 8\pi G T_{\mu\nu}[\alpha]

Master Equation M2 (Flow):

\nabla_\mu(\alpha^4 u^\mu) = 0

Master Equation M3 (Balance):

\nabla_\mu T^{\mu\nu} = 0

Try It

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Interactive tool loading...

Understanding the Results

The outputs reveal how α-field dynamics govern this phenomenon:

  1. Scale dependence - How behavior changes across scales
  2. Regime transitions - Moving between laminar, turbulent, and resonant states
  3. Emergent properties - What arises from the underlying dynamics

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Learn More

Connect this tool to the underlying theory:

  • Understand the equations being computed
  • See how this relates to observable phenomena
  • Explore the evidence supporting these predictions

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Last updated: 2026-03-06