论文标题

对银河系的核盘的KMOS调查:调查设计和金属性

A KMOS survey of the nuclear disk of the Milky Way I: Survey design and metallicities

论文作者

Fritz, Tobias K., Patrick, Lee, Feldmeier-Krause, Anja, Schödel, Rainer, Schultheis, Mathias, Gerhard, Ortwin, Nandakumar, Govind, Neumayer, Nadine, Nogueras-Lara, Francisco, Prieto, M. Almudena

论文摘要

在中央,银河系的凸起的几个程度上有类似于其他星系中核盘的气体,灰尘和恒星(中央分子带)的扁平结构。由于极端的前景灭绝,我们只拥有有关核盘(主要是古老的)恒星种群的稀疏信息。在这里,我们介绍了核磁盘中恒星的KMOS光谱调查,到达旧人群。为了获得无偏的数据集,我们沿每条视线沿着全面的灭绝范围采样恒星。我们还观察到银河凸起的邻近区域的参考场。在这里,我们描述了调查的设计和执行,并提出了第一个结果。我们获得了3113颗恒星的光谱和五个光谱指数,中位S/N为67,并测量3051颗恒星的径向速度。其中,有2735个来源具有足够的S/N来估计指数的温度和金属性。我们使用CO 2-0和Na I K波段特征得出金属度,在该特征中,我们使用具有较高分辨率观测的金属率来得出自己的经验校准。我们使用183颗巨星的金属级校准从-2.5到0.6 DEX,并覆盖高达5500 K的温度。基于指数的金属度偏离校准值,散射为0.32 DEX。我们的金属性的内部不确定性可能较小。我们将这些金属性测量与CO索引一起使用文献关系来得出有效的温度。我们在这里发布该目录。我们的数据集补充了银河系调查(例如Gaia和Apogee)为银河系的内部200 PC半径,由于灭绝而无法通过这些调查很容易访问。我们将在未来的论文中使用派生的特性,以进一步分析核磁盘。

In the central few degrees of the bulge of the Milky Way there is a flattened structure of gas, dust and stars (the central molecular zone) similar to nuclear disks in other galaxies. Due to extreme foreground extinction we possess only sparse information about the (mostly old) stellar population of the nuclear disc. Here we present our KMOS spectroscopic survey of the stars in the nuclear disk reaching the old populations. In order to obtain an unbiased data set, we sample stars in the full extinction range along each line-of-sight. We also observe reference fields in neighboring regions of the Galactic bulge. Here we describe the design and execution of the survey and present first results. We obtain spectra and five spectral indices of 3113 stars with a median S/N of 67 and measure radial velocities for 3051 stars. Of those, 2735 sources have sufficient S/N to estimate temperatures and metallicities from indices. We derive metallicities using the CO 2-0 and Na I K-band spectral features, where we derive our own empirical calibration using metallicities obtained with higher resolution observations. We use 183 giant stars for calibration spanning in metallicity from -2.5 to 0.6 dex and covering temperatures of up to 5500 K. The derived index based metallicities deviate from the calibration values with a scatter of 0.32 dex. The internal uncertainty of our metallicities is likely smaller. We use these metallicity measurements together with the CO index to derive effective temperatures using literature relations. We publish the catalog here. Our data set complements Galactic surveys such as Gaia and APOGEE for the inner 200 pc radius of the Milky Way which is not readily accessible by those surveys due to extinction. We will use the derived properties in future papers for further analysis of the nuclear disk.

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