Evolution of 3-dimensional Shape of Passively Evolving and Star-forming Galaxies at $z<1$
Abstract
Using the HST/ACS -band data, we investigated distribution of apparent axial ratios of galaxies with at in the COSMOS field as a function of stellar mass, specific star formation rate (sSFR), and redshift. We statistically estimated intrinsic 3-dimensional shapes of these galaxies by fitting the axial-ratio distribution with triaxial ellipsoid models characterized by face-on (middle-to-long) and edge-on (short-to-long) axial ratios and . We found that the transition from thin disk to thick spheroid occurs at MS dex, i.e., 10 times lower sSFR than that of the main sequence for galaxies with -- at . Furthermore, the intrinsic thickness () of passively evolving galaxies with -- significantly decreases with time from -- at to -- at , while those galaxies with have irrespective of redshift. On the other hand, star-forming galaxies on the main sequence with -- show no significant evolution in their shape at , but their thickness depends on stellar mass;more massive star-forming galaxies tend to have lower (thinner shape) than low-mass ones. These results suggest that some fraction of star-forming galaxies with a thin disk, which started to appear around , quench their star formation without violent morphological change, and these newly added quiescent galaxies with a relatively thin shape cause the significant evolution in the axial-ratio distribution of passively evolving galaxies with at .
Keywords
Cite
@article{arxiv.1909.08550,
title = {Evolution of 3-dimensional Shape of Passively Evolving and Star-forming Galaxies at $z<1$},
author = {Yuki K. Satoh and Masaru Kajisawa and Kazuharu G. Himoto},
journal= {arXiv preprint arXiv:1909.08550},
year = {2019}
}
Comments
43 pages, 41 figures, accepted for publication in ApJ