English

A Value-added COSMOS2020 Catalog of Physical Properties: Constraining Temperature-dependent Initial Mass Function

Astrophysics of Galaxies 2023-06-23 v1

Abstract

This work presents and releases a catalog of new photometrically-derived physical properties for the 105\sim 10^5 most well-measured galaxies in the COSMOS field on the sky. Using a recently developed technique, spectral energy distributions are modeled assuming a stellar initial mass function (IMF) that depends on the temperature of gas in star-forming regions. The method is applied to the largest current sample of high-quality panchromatic photometry, the COSMOS2020 catalog, that allows for testing this assumption. It is found that the galaxies exhibit a continuum of IMF, and gas temperatures, most of which are bottom-lighter than measured in the Milky Way. As a consequence, the stellar masses and star formation rates of most galaxies here are found to be lower than those measured by traditional techniques in the COSMOS2020 catalog by factors of 1.63.5\sim 1.6-3.5 and 2.570.02.5-70.0, respectively, with the change being the strongest for the most active galaxies. The resulting physical properties provide new insights into variation of the IMF-derived gas temperature along the star-forming main sequence and at quiescence, produce a sharp and coherent picture of downsizing, as seen from the stellar mass functions, and hint at a possible high-temperature and high-density stage of early galactic evolution.

Keywords

Cite

@article{arxiv.2306.12474,
  title  = {A Value-added COSMOS2020 Catalog of Physical Properties: Constraining Temperature-dependent Initial Mass Function},
  author = {Vadim Rusakov and Charles L. Steinhardt and Albert Sneppen},
  journal= {arXiv preprint arXiv:2306.12474},
  year   = {2023}
}

Comments

ApJS in press, 25 pages, 10 figures. Catalog to be published online shortly (available on request now)

R2 v1 2026-06-28T11:11:05.589Z