In this Letter, we investigate how galaxy mass assembly mode depends on stellar mass M∗, using a large sample of ∼10, 000 low redshift galaxies. Our galaxy sample is selected to have SDSS R90>5\arcsec.0, which allows the measures of both the integrated and the central NUV−r color indices. We find that: in the M∗−( NUV−r) green valley, the M∗<1010M\sun galaxies mostly have positive or flat color gradients, while most of the M∗>1010.5M\sun galaxies have negative color gradients. When their central Dn4000 index values exceed 1.6, the M∗<1010.0M\sun galaxies have moved to the UV red sequence, whereas a large fraction of the M∗>1010.5M\sun galaxies still lie on the UV blue cloud or the green valley region. We conclude that the main galaxy assembly mode is transiting from "the outside-in" mode to "the inside-out" mode at M∗<1010M\sun and at M∗>1010.5M\sun. We argue that the physical origin of this is the compromise between the internal and the external process that driving the star formation quenching in galaxies. These results can be checked with the upcoming large data produced by the on-going IFS survey projects, such as CALIFA, MaNGA and SAMI in the near future.
@article{arxiv.1504.06821,
title = {From outside-in to inside-out: galaxy assembly mode depends on stellar mass},
author = {Zhizheng Pan and Jinrong Li and Weipeng Lin and Jing Wang and Lulu Fan and Xu Kong},
journal= {arXiv preprint arXiv:1504.06821},
year = {2015}
}
Comments
Accepted for publication in ApJL,6 pages, 5 figures