On the radial metallicity gradient and radial migration effect of the Galactic disk
Abstract
We study the radial metallicity gradient as a function of [Mg/Fe] and with the help of a guiding radius based on the Apache Point Observatory Galactic Evolution Experiment and Gaia and then analyze the radial migration effect on the radial metallicity gradient and metallicity-rotation gradient between the Galactic thin and thick disks. The derived trend of gradient versus [Mg/Fe] shows a transition at [Mg/Fe] dex, below which the gradient is negative and varies a little as [Mg/Fe] increases; however, it changes sharply in [Mg/Fe] ranges of 0.16-0.18, above which the gradient increases linearly with increasing [Mg/Fe], being a positive value at [Mg/Fe] dex. These positive gradients in the high-[Mg/Fe] populations are found at kpc, and there are nearly no gradients toward higher . By comparing the metallicity distributions, the radial metallicity gradients and the metallicity-rotation gradients between the total sample and kpc subsample (or kpc subsample), we find that, for the thick disk, blurring flattens the gradient and favors metal-poor high-eccentricity stars. These stars are responsible for the measured positive metallicity-rotation gradient of the thick disk.
Keywords
Cite
@article{arxiv.1808.05386,
title = {On the radial metallicity gradient and radial migration effect of the Galactic disk},
author = {Yunpeng Jia and Yuqin Chen and Gang Zhao and Xiangxiang Xue and Jingkun Zhao and Chengqun Yang and Chengdong Li},
journal= {arXiv preprint arXiv:1808.05386},
year = {2018}
}
Comments
Published in ApJ, including 8 pages, 8 figures