Abstract This paper introduces the Time Density Model (TDM), a cosmologicalframework that treats time density ρₜ as the fundamental quantitygoverning both galactic dynamics and large-scale cosmic structure. In TDM, all observables—such as redshift, luminosity distance, andangular displacement—are redefined as integrals of the time-densityfield along the light path. This approach eliminates the need to treatdistance as a primary physical quantity and instead interprets distanceinconsistency as a structural property of the universe. The model demonstrates that local gradients of time density ∇ρₜ canmodify the observed velocity fields of galaxies, offering a potentialexplanation for the flattening and diversity of galactic rotation curveswithout invoking dark matter. On cosmological scales, the geometry ofthe time-density landscape naturally produces directional dependence inredshift, luminosity distance, and large-scale structure formation. TDM provides a unified framework in which galactic and cosmologicalphenomena arise from a single principle: the time gradient. The paperestablishes the theoretical foundation of TDM and outlines theobservational challenges required for empirical validation.
Naruhiko Kaji (Sat,) studied this question.