An Observed Evidence for the Primordial Origin of Galaxy Sizes
Abstract
We present an observational evidence supporting the scenario that the protogalactic angular momenta play an important role in molding the optical sizes of present galaxies. Analyzing the NASA-Sloan Atlas catalog in the redshift range of , we observationally determine the probability density distributions, and , where and denote the galaxy sizes enclosing and of their -band luminosities, respectively. Both of the distributions are found to be well described by a bimodal Gamma mixture model, which is consistent with the recent numerical results. Classifying the local galaxies by their ratios, , we also show that for the case of late-type galaxies with both of and exhibit no bimodal feature, following a unimodal Gamma model. Assuming the existence of a linear causal correlation between of the late-type galaxies and the primordial spin factor, , defined as the degree of misalignments between the initial tidal and protogalaxy inertia tensors, we reconstruct the probability density distributions, , directly from the observationally determined and of the late-type galaxies. It is shown that the reconstructed is in an excellent agreement with the real distribution of that was determined at the protogalactic stages by numerical experiments. A critical implication of our result on reconstructing the initial conditions from observable galaxy sizes is discussed.
Keywords
Cite
@article{arxiv.2508.00520,
title = {An Observed Evidence for the Primordial Origin of Galaxy Sizes},
author = {Jun-Sung Moon and Jounghun Lee},
journal= {arXiv preprint arXiv:2508.00520},
year = {2025}
}
Comments
Accepted for publication in ApJ, 3 figures, 1 table, minor changes after referee's review