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README: Unified Wave-Based Theory of GravityOverviewThis repository supports the thesis A Unified Wave-Based Theory of Gravity: Atomic and Photon Interactions in a Scalar-Tensor Field Medium by Alexander C. Blainey (August 18, 2025). The theory proposes that gravity arises from spiral waves generated by rotating particles (atoms and massive photons, mγ≈10−55m_\gamma \approx 10^{-55}m_\gamma \approx 10^{-55} kg ≈5.61×10−20\approx 5.61 \times 10^{-20}\approx 5.61 \times 10^{-20} eV/$c^2$) in a scalar-tensor field. It unifies quantum and cosmological scales, reproducing Newtonian gravity locally, explaining double-slit interference via microgravity waves, and yielding a cosmological repulsive force that eliminates dark energy.Key FeaturesLocal Gravity: Spin rates ωi=η/mi\omega_i = \eta / m_i\omega_i = \eta / m_i (η=1.10×10−30\eta = 1.10 \times 10^{-30}\eta = 1.10 \times 10^{-30} s$^{-1}\cdot$kg) produce forces F≈Gm2M/r2F \approx G m_2 M / r^2F \approx G m_2 M / r^2 . Cosmology: Repulsive force Fs=krm2rF_s = k_r m_2 rF_s = k_r m_2 r (kr≈5.2×10−36k_r \approx 5.2 \times 10^{-36}k_r \approx 5.2 \times 10^{-36} s$^{-2}$) yields H0≈70.2H_0 \approx 70.2H_0 \approx 70.2 km/s/Mpc and Λ≈1.73×10−52\Lambda \approx 1.73 \times 10^{-52}\Lambda \approx 1.73 \times 10^{-52} m$^{-2}$, reconciling Planck (67.4±0.567.4 \pm 0.567.4 \pm 0.5 km/s/Mpc) and SH0ES (73.0±1.073.0 \pm 1.073.0 \pm 1.0 km/s/Mpc) measurements. Double-Slit Interference: Material-dependent fringe spacing (Δx∝ωi\Delta x \propto \omega_i\Delta x \propto \omega_i , λeff≈500\lambda_{\text{eff}} \approx 500\lambda_{\text{eff}} \approx 500 nm) challenges QED’s wavelength-only dependence. Fractal Scaling: Narayana and Perrin sequences define self-similar Blainey points across scales. Performance: Tests on 35 objects (force error 1.3%, SD 1.8%) and 9 orbital systems (MAPE 0.8%, SD 0.5%) outperform GR (2.3–3.6%) and MOND (1.5–2.0%).
Repository Contents/data/:orbital_data.csv: Orbital parameters for 9 systems (e.g., TRAPPIST-1, Kepler-223, Saturn). force_tests.csv: Force data for 35 objects (alloys, planets, pulsars, black holes). synthetic_noise.csv: Synthetic datasets with Gaussian noise (SD 0.5%).
/code/:double_slit.py: Simulates single-photon double-slit interference (Δx≈0.5\Delta x \approx 0.5\Delta x \approx 0.5 mm). parameter_optimization.py: Optimizes η\eta\eta , ksk_sk_s , b⋆b_\starb_\star via gradient descent. statistical_analysis.py: Computes MAPE and t-tests vs. GR and MOND.
/docs/:Thesis PDF (full document). Notes on data sources (NASA Exoplanet Archive, NICER, LIGO, EHT).
ReproducibilityTo reproduce results:Install Python 3.x with dependencies (numpy, matplotlib). Run double_slit.py to generate interference patterns (Table 5 in thesis). Use parameter_optimization.py to fit model parameters. Run statistical_analysis.py to compute MAPE and t-tests against GR/MOND (Table 4). Verify cosmological parameters (H0H_0H_0 , Λ\Lambda\Lambda ) using equations in Section 6.
Experimental ValidationProposed experiments:Photon Mass: Pulsar timing (e.g., PSR J0437-4715) to test mγ≈10−55m_\gamma \approx 10^{-55}m_\gamma \approx 10^{-55}
kg.
Scalar Coupling: Mach-Zehnder interferometer with osmium block (phase shift 10−610^{-6}10^{-6}
rad).
Double-Slit: Single-photon setup (slit thickness 100 nm, flux
LimitationsDouble-slit material dependence requires experimental confirmation (contradicts QED). Saturn anomaly (7.7% force error) needs spectroscopy to align with Cassini residuals. Photon mass tests must distinguish from magnetic field effects.
CitationBlainey, A. C. (2025). A Unified Wave-Based Theory of Gravity: Atomic and Photon Interactions in a Scalar-Tensor Field Medium.ReferencesPlanck Collaboration (2020). A&A, 641, A6. Riess et al. (2022). ApJ, 934, L7. Aspect et al. (2020). Nature, 580, 189–192. Wang et al. (2024). ApJ, 965, 108. Hees et al. (2019). A&A, 624, A59.
Alexancer C Blainey aka Alex Blainey prior works referenced at https://en.wikipedia.org/wiki/Brain%E2%80%93computer_interface