The Galaxy Clustering Crisis in Abundance Matching
Abstract
Galaxy clustering on small scales is significantly under-predicted by sub-halo abundance matching (SHAM) models that populate (sub-)haloes with galaxies based on peak halo mass, . SHAM models based on the peak maximum circular velocity, , have had much better success. The primary reason based models fail is the relatively low abundance of satellite galaxies produced in these models compared to those based on . Despite success in predicting clustering, a simple based SHAM model results in predictions for galaxy growth that are at odds with observations. We evaluate three possible remedies that could "save" mass-based SHAM: (1) SHAM models require a significant population of "orphan" galaxies as a result of artificial disruption/merging of sub-haloes in modern high resolution dark matter simulations; (2) satellites must grow significantly after their accretion; and (3) stellar mass is significantly affected by halo assembly history. No solution is entirely satisfactory. However, regardless of the particulars, we show that popular SHAM models based on cannot be complete physical models as presented. Either truly is a better predictor of stellar mass at and it remains to be seen how the correlation between stellar mass and comes about, or SHAM models are missing vital component(s) that significantly affect galaxy clustering.
Keywords
Cite
@article{arxiv.1705.06347,
title = {The Galaxy Clustering Crisis in Abundance Matching},
author = {Duncan Campbell and Frank C. van den Bosch and Nikhil Padmanabhan and Yao-Yuan Mao and Andrew R. Zentner and Johannes U. Lange and Fangzhou Jiang and Antonia Villarreal},
journal= {arXiv preprint arXiv:1705.06347},
year = {2022}
}
Comments
25 pages, 22 figures, submitted to MNRAS, comments welcome