Metallicity Calibration and Photometric Parallax Estimation: II. SDSS photometry
arXiv:1611.08095 · doi:10.1007/s10509-016-2987-6
Abstract
We used the updated [Fe/H] abundances of 168 F-G type dwarfs and calibrated them to a third order polynomial in terms of reduced ultraviolet excess, defined with data in the SDSS. We estimated the absolute magnitudes for the same stars via the re-reduced Hipparcos parallaxes and calibrated the absolute magnitude offsets, , relative to the intrinsic sequence of Hyades to a third order polynomial in terms of . The ranges of the calibrations are [Fe/H]0.3 dex and mag. The mean of the residuals and the corresponding standard deviation for the metallicity calibration are 0 and 0.137 mag; while, for the absolute magnitude calibration they are 0 and 0.179 mag, respectively. We applied our procedures to 23,414 dwarf stars in the Galactic field with the Galactic coordinates , and size 78 deg. We estimated absolute magnitude dependent vertical metallicity gradients as a function of vertical distance . The gradients are deep in the range of kpc, while they are very small positive numbers beyond kpc. All dwarfs with mag are thin-disc stars and their distribution shows a mode at mag, while the absolute magnitudes are dominated by thick disc and halo stars, i.e. the apparently bright ones ( mag) are thick-disc stars with a mode at mag, while the halo population is significant in the faint stars ( mag).
Eq. 11 was corrected, results and conclusions are the same. 16 pages, 16 figures and 5 tables, accepted for publication in Astrophysics and Space Science
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Cited by in corpus (5)
- Chemical and Kinematic Properties of the Galactic Disk from the LAMOST and Gaia Sample Stars
- Vertical and radial metallicity gradients in high latitude galactic fields with SDSS
- Galactic Stellar Populations from Photometric Metallicity Distribution Functions
- Photometric Calibration of the Fe] Element: II. Calibration with SDSS Photometry
- Metallicity and absolute magnitude calibrations for F-G type main-sequence stars in the Gaia era