Theoretical modeling demonstrates singularity resolution and dark matter-free galactic rotation curves, suggesting spacetime geometry is governed by quantum information.
Key Points
To formulate Unified Informational Gravity by integrating quantum information density and fractal scale dynamics into general relativity, resolving cosmic singularities and dark sector phenomena.
Modified the Einstein field equations with a Fractal Informational Metric Operator and an Entropic Stress-Energy Tensor based on Landauer's principle and Shannon entropy.
Tested galactic dynamics on 5 Spitzer Photometry and Accurate Rotation Curves (SPARC) galaxies using an automated batch optimization engine.
Conducted a matched-filter search on gravitational wave event GW150914 to identify post-merger quantum horizon signals.
Eliminated infinite curvature singularities at Planckian scales using scale-dependent fractal dimensions without requiring non-baryonic matter.
Matched rotation curves across 5 SPARC galaxies with single-digit RMS deviations ranging from 3.31 to 13.07 km/s without dark matter halos.
Detected post-merger quantum horizon echoes in GW150914 data at Δt = 12.0 ms with a +2.57 ΔSNR signal recovery enhancement.