paper

A Monte-Carlo Method for Estimating Stellar Photometric Metallicity Distributions

arXiv:1605.00336 · doi:10.3847/0004-637X/826/1/36

Abstract

Based on the Sloan Digital Sky Survey (SDSS), we develop a new monte-carlo based method to estimate the photometric metallicity distribution function (MDF) for stars in the Milky Way. Compared with other photometric calibration methods, this method enables a more reliable determination of the MDF, in particular at the metal-poor and metal-rich ends. We present a comparison of our new method with a previous polynomial-based approach, and demonstrate its superiority. As an example, we apply this method to main-sequence stars with , kpc kpc, and in different intervals in height above the plane, . The MDFs for the selected stars within two relatively local intervals ( kpc kpc, kpc kpc) can be well-fit by two Gaussians, with peaks at [Fe/H] and respectively, one associated with the disk system, the other with the halo. The MDFs for the selected stars within two more distant intervals ( kpc kpc, kpc kpc) can be decomposed into three Gaussians, with peaks at [Fe/H] , and respectively, where the two lower peaks may provide evidence for a two-component model of the halo: the inner halo and the outer halo. The number ratio between the disk component and halo component(s) decreases with vertical distance from the Galactic plane, consistent with the previous literature.

6 pages, 6 Figures, Accepted for publication in ApJ

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