paper

Angular momentum variation of the Milky Way thick disk: The dependence of chemical abundance and the evidence on inside-out formation scenario

arXiv:2304.12929

Abstract

We investigate the angular momentum of mono-abundance populations (MAPs) of the Milky Way thick disk by using a sample of 26,076 giant stars taken from APOGEE DR17 and Gaia EDR3. The vertical and perpendicular angular momentum components, and , of MAPs in narrow bins have significant variations across the [/M]-[M/H] plane. and systematically change with [M/H] and [/M] and can be alternatively quantified by the chemical gradients: \,dex\,kpc\,km\,s, \,dec\,kpc\,km\,s, and \,dex\,kpc\,km\,s, \,dec\,kpc\,km\,s. These correlations can also be explained as the chemical-dependence of the spatial distribution shape of MAPs. We also exhibit the corresponding age dependence of angular momentum components. Under the assumption that the guiding radius () is proportional to , it provides direct observational evidence of the inside-out structure formation scenario of the thick disk, with \,kpc\,Gyr. The progressive changes in the disk thickness can be explained by the upside-down formation or/and the consequent kinematical heating.

12 pages, 5 figures, 1 table, accepted for publication in ApJ