Dissipative Higgs Cosmology: Galactic Rotation, Black Hole Regularization, and Dark Energy Without Dark Matter
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This dataset contains all data, code, and configuration files for the paper 'Dissipative Higgs Cosmology: Galactic Rotation, Black Hole Regularization, and Dark Energy Without Dark Matter'. The repository is organized into five main folders: 1_Experimental_Data (observational data fits), 2_Simulation_Results (numerical relativity outputs), 3_Analysis_Scripts (Python code for reproducibility), 4_Figures (publication-ready graphics), and 5_Documentation (usage guides and data dictionaries)."We propose a unified cosmological model where a dissipative Higgs field (γ∂tϕH) replaces dark matter and dark energy. Using numerical relativity simulations and SPARC observational data, we demonstrate: (1) Galactic rotation curves emerge from Higgs gradient forces (∇|ϕH|2), with maximum influence at ∼5-10 kpc independent of baryonic mass concentration; (2) Black hole singularities are eliminated as ϕH → 0 at rs, maintaining finite curvature; (3) Dark energy arises from Higgs vacuum fluctuations (ρΛ ∝ |ϕH|2). The model achieves excellent fits to rotation curves (χ2/dof ≈ 1.1 − 1.3) while providing testable predictions for gravitational wave observations and X-ray profiles. All simulation data and codes are publicly archived.



