English

The Galaxy Clustering Crisis in Abundance Matching

Astrophysics of Galaxies 2022-07-22 v1

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, MpeakM_{\rm peak}. SHAM models based on the peak maximum circular velocity, VpeakV_{\rm peak}, have had much better success. The primary reason MpeakM_{\rm peak} based models fail is the relatively low abundance of satellite galaxies produced in these models compared to those based on VpeakV_{\rm peak}. Despite success in predicting clustering, a simple VpeakV_{\rm peak} 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 MpeakM_{\rm peak} cannot be complete physical models as presented. Either VpeakV_{\rm peak} truly is a better predictor of stellar mass at z0z\sim 0 and it remains to be seen how the correlation between stellar mass and VpeakV_{\rm peak} 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