Emergent spacetime geometry from the Dirac phase field — exact N-body solutions, dark matter without new particles, quantum-corrected GR
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Updated
Mar 26, 2026 - Python
Emergent spacetime geometry from the Dirac phase field — exact N-body solutions, dark matter without new particles, quantum-corrected GR
Predicting 175 galaxy rotation curves from first principles — zero parameters fitted. Derives MOND acceleration scale a0 = cH0/(2pi) from wave mechanics. Click the Colab badge to reproduce in 30 seconds.
The ACM Trunk: a rigid holographic framework for galactic dynamics. This repository provides the core analytical engine for predicting galaxy rotation behavior from baryonic distributions via linear holographic screening. Tagline No galaxy-by-galaxy fits. No hidden knobs. Just the physics of the background floor.
Analysis code and frozen prediction ledgers for entropic gravity on a dark superfluid — Gaia DR4 kill test 2026-12-02
All 8 Virgo galaxies show DECLINING rotation curves. All 10 field galaxies show FLAT rotation curves. This is exactly what MOND/Entropic Gravity predicts.
Wide binary stars at large separations show 27.7% higher orbital velocities than Newtonian prediction — exactly as MOND predicts.
Galactic-Rotation-Curves-from-the-de-Sitter-Horizon, Gibbons–Hawking temperature of the de Sitter horizon
Open Evidence Pack for QUMOND-based emergent gravity — auditable engine, reproducible artifacts, reviewer-ready checks.
Gaia DR3 wide binaries (341,315 systems) show Temporal Shear recovery at R_s=2,646±182 AU (Δχ²=14,845 vs Newtonian). Saturation α_sat=0.366±0.012. Environmental ordering confirmed (p<10⁻⁴). TEP conformal screening transition
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