论文标题

测试化学标记的溶解出生簇的化学均匀性

Testing the chemical homogeneity of chemically tagged dissolved birth clusters

论文作者

Cheng, Chloe M., Price-Jones, Natalie, Bovy, Jo

论文摘要

化学标记的星星以银河系的方式回到常见的地层位点,并在这些化学标记的出生簇中建立高水平的化学均匀性对于理解银河盘的化学和动力学历史至关重要。我们通过将Apogee Spectra建模为初始恒星质量的一维函数,对观察到的恒星光谱进行了向前建模,然后使用近似Bayesian计算比较数据和模拟,从而限制了Apogee调查中发现的17个新化学标记的溶解出生簇的固有丰度散射。我们用众所周知的开放簇M67,NGC 6819和NGC 6791来体现这种方法。我们研究了通过Apogee测量的15个要素,发现一般而言,我们能够在化学标记的生育群中对大多数元素的内在丰度散布($ sim of $ sim of 0.00的$ 0.02)的内在丰度散射获得非常强的限制。 0.03 $ dex的O,Mn和Fe,$ \ Lessim 0.04 $ dex for Si and Ni和$ \ lyssim 0.05 $ dex for N,mg和ca。虽然我们发现了一些证据表明其余元素(即Na,Al,S,K,Ti和V)中少量的化学不均匀性,但与与以前的发现相比,我们仍然能够获得相似或更强的限制。通过强烈限制其化学均匀性水平,我们可以加强以下陈述:这些恒星代表出生簇,对未来的化学标记研究产生了有希望的影响。

Chemically tagging stars back to common formation sites in the Milky Way and establishing a high level of chemical homogeneity in these chemically tagged birth clusters is crucial for understanding the chemical and dynamical history of the Galactic disc. We constrain the intrinsic abundance scatter in 17 newly chemically tagged dissolved birth clusters found in the APOGEE survey by modelling APOGEE spectra as a one-dimensional function of initial stellar mass, performing forward modelling of the observed stellar spectra, then comparing the data and simulations using Approximate Bayesian Computation. We exemplify this method with the well-known open clusters M67, NGC 6819, and NGC 6791. We study 15 elements measured by APOGEE and find that, in general, we are able to obtain very strong constraints on the intrinsic abundance scatter of most elements in the chemically tagged birth clusters, with upper limits of $\lesssim 0.02$ dex for C, $\lesssim 0.03$ dex for O, Mn, and Fe, $\lesssim 0.04$ dex for Si and Ni, and $\lesssim 0.05$ dex for N, Mg, and Ca. While we find some evidence for a small amount of chemical inhomogeneity in the remaining elements (i.e. Na, Al, S, K, Ti, and V), we are still able to obtain similar or stronger limits compared to those found for open clusters, consistent with previous findings. By strongly constraining their level of chemical homogeneity, we can strengthen the statement that these groups of stars represent birth clusters, with promising implications for future chemical tagging studies.

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