paper

Galactic Stellar Populations from Photometric Metallicity Distribution Functions

arXiv:1905.02880 · doi:10.3847/1538-4357/ab2050

Abstract

Based on Sloan Digital Sky Survey (SDSS) photometric data, Gu developed a new Monte-Carlo-based method for estimating the stellar metallicity distribution functions (MDFs). This method enables a more reliable determination of MDFs compared with the conventional polynomial-based methods. In this work, MDF determined from the method are well fit by three-Gaussian model, with peaks at =, , and , associated with the thick disk, inner halo, and outer halo, respectively. The vertical metallicity gradient within is around . But the mean radial gradient is almost negligible. The density profile of the thick disk is fitted with modified double exponential law decaying to a constant at far distance. The scale height and scale length thus estimated are and , which are in consistent with the results determined from star-counts method in previous studies. The halos are described with two-axial power-law ellipsoid and the axis ratios of both inner halo and outer halo, inferred from stellar number density in - plane, are and , respectively. It also manifests that the outer halo is a more spherical than inner halo. Moreover, the halo power-law indices estimated are and , indicating that the stellar number density of inner halo changes more steeper than that of outer halo.

10 pages, 12 figures, Accepted for publication in ApJ

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