论文标题

AMBRE项目:频谱归一化对金属富含银河盘中MG丰度的影响

The AMBRE Project: Spectrum normalisation influence on Mg abundances in the metal-rich Galactic disc

论文作者

Santos-Peral, Pablo, Recio-Blanco, Alejandra, de Laverny, Patrick, Fernández-Alvar, Emma, Ordenovic, Christophe

论文摘要

大量的α元素在银河考古学中提供了重要的化石特征,以追踪不同盘子种群的化学演化。高精度化学丰度对于提高我们对银河系中存在的化学动力学特性的理解至关重要。但是,在金属丰富的光盘([m/h]> 0 dex)中得出精确的丰度估计仍然具有挑战性。本文的目的是分析影响金属富含金属恒星光谱的镁丰度估计的不同误差源。我们从AMBRE项目中获得了2210个太阳能邻里明星的87522高分辨率光谱的MG丰度。为此,采用了高加林自动化的丰度估计程序。归一化过程对派生的丰度有很大的影响,对恒星类型和线强度有明显的依赖。对于非饱和线,应使用拟合良好标准对局部连续体放置的最佳波长域进行评估,从而允许使用光谱类型的掩盖尺寸依赖性。此外,对于强饱和线,应用狭窄的归一化窗口可减少丰度估计的参数依赖性偏差,从而提高了线到线的丰度精度。此外,在较大的光谱分辨率上工作总是比低较低的分辨率更好。最大的精度的提高使观察到明显的薄盘化学区别和镁丰度的趋势也有可能,即使在超极金属度下也是如此。在精确的运动学和动力学数据的时代,优化针对大型光谱恒星调查实施的标准化程序将为我们对我们对银河系种群的化学动力学模式的理解提供重大改进。

The abundance of α-elements provides an important fossil signature in Galactic archaeology to trace the chemical evolution of the different disc populations. High-precision chemical abundances are crucial to improving our understanding of the chemodynamical properties present in the Galaxy. However, deriving precise abundance estimations in the metal-rich disc ([M/H] > 0 dex) is still challenging. The aim of this paper is to analyse different error sources affecting magnesium abundance estimations from optical spectra of metal-rich stars. We derived Mg abundances for 87522 high-resolution spectra of 2210 solar neighbourhood stars from the AMBRE Project. For this purpose, the GAUGUIN automated abundance estimation procedure was employed. The normalisation procedure has a strong impact on the derived abundances, with a clear dependence on the stellar type and the line intensity. For non-saturated lines, the optimal wavelength domain for the local continuum placement should be evaluated using a goodness-of-fit criterion, allowing mask-size dependence with the spectral type. Moreover, for strong saturated lines, applying a narrow normalisation window reduces the parameter-dependent biases of the abundance estimate, increasing the line-to-line abundance precision. In addition, working at large spectral resolutions always leads to better results than at lower ones. The resulting improvement in the abundance precision makes it possible to observe both a clear thin-thick disc chemical distinction and a decreasing trend in the magnesium abundance even at supersolar metallicities. In the era of precise kinematical and dynamical data, optimising the normalisation procedures implemented for large spectroscopic stellar surveys would provide a significant improvement to our understanding of the chemodynamical patterns of Galactic populations.

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