A Galactic Self-Portrait: Density Structure and Integrated Properties of the Milky Way Disk
arXiv:2507.17629 · doi:10.3847/1538-4357/adf723
Abstract
The evolution history of the Milky Way disk is imprinted in the ages, positions, and chemical compositions of individual stars. In this study, we derive the intrinsic density distribution of different stellar populations using the final data release of the Apache Point Observatory Galactic Evolution Experiment (APOGEE) survey. A total of 203,197 red giant branch stars are used to sort the stellar disk ( kpc) into sub-populations of metallicity ([M/H] dex), age (), and -element abundances ([/M]). We fit the present-day structural parameters and density distribution of each stellar sub-population after correcting for the survey selection function. The low- disk is characterized by longer scale lengths and shorter scale heights, and is best fit by a broken exponential radial profile for each population. The high- disk is characterized by shorter scale lengths and larger scale heights, and is generally well-approximated by a single exponential radial profile. These results are applied to produce new estimates of the integrated properties of the Milky Way from early times to the present day. We measure the total stellar mass of the disk to be M and the average mass-weighted scale length is kpc. The Milky Way's present-day color of is consistent with the classification of a red spiral galaxy, although it has only been in the "green valley" region of the galaxy color-mass diagram for the last Gyr.
40 pages, 20 figures, accepted to ApJ
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