论文标题
Skymapper-Gaia RVS gaia-enceladus-sausage的观点 - 对银河系的最后一次主要合并的金属性和质量的调查
The SkyMapper-Gaia RVS view of the Gaia-Enceladus-Sausage -- an investigation of the metallicity and mass of the Milky Way's last major merger
论文作者
论文摘要
我们表征了最近使用Skymapper调查中的光度法金属性和Gaia radial速度测量的运动学测量的Gaia-cenceladus-sausage运动学结构。通过检查在运动/动作空间中分类的星星的金属分布功能(MDF),我们发现$ \ sqrt {J_R} $ vs $ l_z $ space可以使最清洁的Gaia-ceceladus-Sausausausage星星在迪克斯或晕星中最小的污染物中最小的污染物,或者在其他serate serge或sernge中均为其他污染物。售价$ 30 \ leq \ sqrt {j_r} \ leq 50 $(kpc km s $^{ - 1})^{1/2} $和$ -500 \ leq l_z \ leq 500 $ km s $ s $ s $ s $^{ - 1} $ aft [fe/h h] 0.34 dex。该[Fe/H]估计比文献估计值更丰富金属估计,低于0.1-0.3 $ dex。基于MDF,我们发现在其他运动学/动作空间中选择Gaia-cenceladus-Sausausage恒星,而没有其他种群信息会导致污染的样品。根据我们的标准选择的干净的Gaia-cenceladus-Sausage样品略有逆行,并且沿着高$ V_T $ HALO CMD CMD双序列的蓝色序列位于蓝色序列。使用源自宇宙学模拟的星系质量金属关系,并假设平均恒星年龄为10 Gyr,我们估计Gaia-Ecceladus-Sausausage祖细胞卫星的质量为$ 10^{8.85-9.85} $ M $ _ $ _ {\ odot} $,基于文献估计,并具有一致的文献估计。对于更精致的纯粹的Gaia-Ecceladus-Sausage Stars选择,需要有关详细丰度和年龄的其他信息。
We characterize the Gaia-Enceladus-Sausage kinematic structure recently discovered in the Galactic halo using photometric metallicities from the SkyMapper survey, and kinematics from Gaia radial velocities measurements. By examining the metallicity distribution functions (MDFs) of stars binned in kinematic/action spaces, we find that the $\sqrt{J_R}$ vs $L_z$ space allows for the cleanest selection of Gaia-Enceladus-Sausage stars with minimal contamination from disc or halo stars formed in situ or in other past mergers. Stars with $30 \leq \sqrt{J_R} \leq 50$ (kpc km s$^{-1})^{1/2}$ and $-500 \leq L_z \leq 500$ kpc km s$^{-1}$ have a narrow MDF centered at [Fe/H] $= -1.17$ dex with a dispersion of 0.34 dex. This [Fe/H] estimate is more metal-rich than literature estimates by $0.1-0.3$ dex. Based on the MDFs, we find that selection of Gaia-Enceladus-Sausage stars in other kinematic/action spaces without additional population information leads to contaminated samples. The clean Gaia-Enceladus-Sausage sample selected according to our criteria is slightly retrograde and lies along the blue sequence of the high $V_T$ halo CMD dual sequence. Using a galaxy mass-metallicity relation derived from cosmological simulations and assuming a mean stellar age of 10 Gyr we estimate the mass of the Gaia-Enceladus-Sausage progenitor satellite to be $10^{8.85-9.85}$ M$_{\odot}$, which is consistent with literature estimates based on disc dynamic and simulations. Additional information on detailed abundances and ages would be needed for a more sophisticated selection of purely Gaia-Enceladus-Sausage stars.