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Effects of the selection function on metallicity trends in spectroscopic surveys of the Milky Way

机译:选择功能对银河系光谱调查中金属性趋势的影响

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Context. Large spectroscopic Galactic surveys imply a selection function in the way they performed their target selection. Aims. We investigate here the effect of the selection function on the metallicity distribution function (MDF) and on the vertical metallicity gradient by studying similar lines of sight using four different spectroscopic surveys (APOGEE, LAMOST, RAVE, and Gaia -ESO), which have different targeting strategies and therefore different selection functions. Methods. We use common fields between the spectroscopic surveys of APOGEE, LAMOST, RAVE (ALR) and APOGEE, RAVE, Gaia -ESO (AGR) and use two stellar population synthesis models, GALAXIA and TRILEGAL, to create mock fields for each survey. We apply the selection function in the form of colour and magnitude cuts of the respective survey to the mock fields to replicate the observed source sample. We make a basic comparison between the models to check which best reproduces the observed sample distribution. We carry out a quantitative comparison between the synthetic MDF from the mock catalogues using both models to understand the effect of the selection function on the MDF and on the vertical metallicity gradient. Results. Using both models, we find a negligible effect of the selection function on the MDF for APOGEE, LAMOST, and RAVE. We find a negligible selection function effect on the vertical metallicity gradients as well, though GALAXIA and TRILEGAL have steeper and shallower slopes, respectively, than the observed gradient. After applying correction terms on the metallicities of RAVE and LAMOST with respect to our reference APOGEE sample, our observed vertical metallicity gradients between the four surveys are consistent within 1 σ . We also find consistent gradient for the combined sample of all surveys in ALR and AGR. We estimated a mean vertical metallicity gradient of ? 0.241 ± 0.028 ?dex?kpc ~(-1) . There is a significant scatter in the estimated gradients in the literature, but our estimates are within their ranges. Conclusions. We have shown that there is a negligible selection function effect on the MDF and the vertical metallicity gradients for APOGEE, RAVE, and LAMOST using two stellar population synthesis models. Therefore, it is indeed possible to combine common fields of different surveys in studies using MDF and metallicity gradients provided their metallicities are brought to the same scale.
机译:上下文。大型光谱银河勘测意味着他们执行目标选择的方式具有选择功能。目的我们在这里通过使用四种不同的光谱学调查(APOGEE,LAMOST,RAVE和Gaia -ESO)研究相似的视线,研究选择函数对金属分布函数(MDF)和垂直金属梯度的影响定位策略以及不同的选择功能。方法。我们使用APOGEE,LAMOST,RAVE(ALR)和APOGEE,RAVE,Gaia -ESO(AGR)的光谱调查之间的公共字段,并使用两个恒星种群综合模型GALAXIA和TRILEGAL为每个调查创建模拟字段。我们将相应调查的颜色和幅度削减形式的选择函数应用于模拟字段,以复制观察到的源样本。我们在模型之间进行基本比较,以检查哪种模型最能重现观察到的样本分布。我们使用两种模型对模拟目录中的合成MDF进行了定量比较,以了解选择功能对MDF和垂直金属度梯度的影响。结果。使用这两种模型,我们发现选择功能对APOGEE,LAMOST和RAVE的MDF的影响可忽略不计。尽管GALAXIA和TRILEGAL的斜率分别比所观察到的斜率更陡峭和更浅,但我们也发现对垂直金属梯度的选择函数影响也可以忽略不计。在相对于我们的参考APOGEE样本对RAVE和LAMOST的金属性应用校正项后,我们在四个测量之间观察到的垂直金属性梯度在1σ内一致。我们还为ALR和AGR中所有调查的合并样本找到了一致的梯度。我们估计平均垂直金属度梯度为? 0.241±0.028ΔdexΔkpc〜(-1)。文献中估计的梯度存在很大的分散性,但我们的估计在其范围内。结论。我们已经表明,使用两个恒星种群综合模型,对ADFGEE,RAVE和LAMOST的MDF和垂直金属度梯度的选择功能影响可忽略不计。因此,确实有可能在使用MDF和金属度梯度的研究中将不同调查的共同领域结合起来,前提是它们的金属度达到相同的规模。

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