Manuscript
Gravitational Time Dilation as an Alternative Explanation for the Galaxy Rotation Problem
Charles W Rabico Jr
Pre-print brief · submitted for scientific commentary · DOI pending
Stars at the outer edges of spiral galaxies orbit faster than Newtonian mechanics allows given the visible mass. The standard resolution is an undetected mass component. This brief argues that resolution assumes our time measurements across galactic structures are uniform — and they are not. A galaxy's core is dominated by a supermassive black hole where time slows dramatically; its sparse edge sits in far weaker curvature where time runs closer to flat-spacetime rates. Observed from an Earth-based frame, the core appears to tick slower and the edge faster. On this reading, the edge stars do not move faster — they are perceived through a different rate of time. The brief is deliberately qualitative: it proposes the mechanism and calls for quantifying time-dilation gradients from galactic centre to edge, simulating relativistic corrections on observed rotation curves, and comparing the result against dark-matter halo models.
Manuscript available on request.
