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DOES SEGUE/SDSS INDICATE A DUAL GALACTIC HALO?

机译:SEGUE / SDSS是否表示双银河光环?

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We re-examine recent claims of observational evidence for a dual Galactic halo in SEGUE/SDSS data, and trace them back to improper error treatment and neglect of selection effects. In particular, the detection of a vertical abundance gradient in the halo can be explained as a metallicity bias in distance. A similar bias and the impact of disk contamination affect the sample of blue horizontal branch stars. These examples highlight why non-volume complete samples require forward modeling from theoretical models or extensive bias-corrections. We also show how observational uncertainties produce the specific non-Gaussianity in the observed azimuthal velocity distribution of halo stars, which can be erroneously identified as two Gaussian components. A single kinematic component yields an excellent fit to the observed data, when we model the measurement process including distance uncertainties. Furthermore, we show that sample differences in proper motion space are the direct consequence of kinematic cuts and are enhanced when distance estimates are less accurate. Thus, their presence is neither proof of a separate population nor a measure of reliability for the applied distances. We conclude that currently there is no evidence from SEGUE/SDSS that would favor a dual Galactic halo over a single halo that is full of substructure.
机译:我们重新检查了最近在SEGUE / SDSS数据中双银河光环的观测证据的主张,并将其追溯到错误的错误处理和对选择效果的忽视。特别地,在光晕中的垂直丰度梯度的检测可以解释为距离的金属性偏差。类似的偏差和磁盘污染的影响也会影响蓝色水平分支星的样本。这些示例说明了为什么非大量完整样本需要从理论模型或广泛的偏差校正中进行正向建模。我们还展示了观测不确定性如何在观测到的晕星的方位角速度分布中产生特定的非高斯性,这可以被错误地识别为两个高斯分量。当我们对包括距离不确定性的测量过程进行建模时,单个运动学分量可以很好地拟合观察到的数据。此外,我们显示出适当运动空间中的样本差异是运动学切割的直接结果,并且当距离估算的准确性较差时,样本差异有所增加。因此,它们的存在既不是单独种群的证明,也不是所施加距离的可靠性的量度。我们得出的结论是,目前SEGUE / SDSS尚无证据支持双银河光环而不是充满子结构的单个光环。

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