首页> 外文期刊>The Astrophysical journal >THE APOGEE RED-CLUMP CATALOG: PRECISE DISTANCES, VELOCITIES, AND HIGH-RESOLUTION ELEMENTAL ABUNDANCES OVER A LARGE AREA OF THE MILKY WAY'S DISK
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THE APOGEE RED-CLUMP CATALOG: PRECISE DISTANCES, VELOCITIES, AND HIGH-RESOLUTION ELEMENTAL ABUNDANCES OVER A LARGE AREA OF THE MILKY WAY'S DISK

机译:APOGEE红色群集目录:银河盘大面积区域上的精确距离,速度和高分辨率元素丰度

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The Sloan Digital Sky Survey III's Apache Point Observatory Galactic Evolution Experiment (APOGEE) is a high-resolution near-infrared spectroscopic survey covering all of the major components of the Galaxy, including the dust-obscured regions of the inner Milky Way disk and bulge. Here we present a sample of 10,341 likely red-clump stars (RC) from the first two years of APOGEE operations, selected based on their position in color-metallicity-surface-gravity-effective-temperature space using a new method calibrated using stellar evolution models and high-quality asteroseismology data. The narrowness of the RC locus in color-metallicity-luminosity space allows us to assign distances to the stars with an accuracy of 5%-10%. The sample extends to typical distances of about 3 kpc from the Sun, with some stars out to 8 kpc, and spans a volume of approximately 100 kpc3 over 5 kpc R 14 kpc, |Z| 2 kpc, and –15° Galactocentric azimuth 30°. The APOGEE red-clump (APOGEE-RC) catalog contains photometry from the Two Micron All Sky Survey, reddening estimates, distances, line-of-sight velocities, stellar parameters and elemental abundances determined from the high-resolution APOGEE spectra, and matches to major proper motion catalogs. We determine the survey selection function for this data set and discuss how the RC selection samples the underlying stellar populations. We use this sample to limit any azimuthal variations in the median metallicity within the ≈45° azimuthal region covered by the current sample to be ≤0.02 dex, which is more than an order of magnitude smaller than the radial metallicity gradient. This result constrains coherent non-axisymmetric flows within a few kiloparsecs from the Sun.
机译:Sloan Digital Sky Survey III的Apache Point天文台银河演化实验(APOGEE)是高分辨率的近红外光谱调查,涵盖了银河系的所有主要组成部分,包括银河系内盘和凸起处被灰尘遮盖的区域。在这里,我们展示了APOGEE运营的前两年中10,341个可能的红团星(RC)的样本,这些恒星是根据它们在彩色金属表面重力有效温度空间中的位置使用恒星演化校准的新方法选择的模型和高质量的地震数据。彩色金属发光度空间中RC轨迹的狭窄度使我们能够以5%-10%的精度分配与恒星的距离。样本距太阳的典型距离约为3 kpc,有些恒星的距离为8 kpc,在5 kpc上跨度约为100 kpc3,R 14 kpc,| Z |。 2 kpc和–15°准星心方位角30°。 APOGEE红团(APOGEE-RC)目录包含来自“两微米全天候”勘测的测光,变红估算,距离,视线速度,恒星参数和元素丰度,这些参数是根据高分辨率APOGEE光谱确定的,并与主要的适当运动目录。我们确定该数据集的调查选择功能,并讨论RC选择如何对潜在的恒星种群进行采样。我们使用该样本将当前样本覆盖的≈45°方位角区域内的中位金属度的任何方位角变化限制为≤0.02dex,这比径向金属度梯度小一个数量级。该结果将相干非轴对称流动限制在距太阳几千帕秒的范围内。
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