论文标题

银河古典头孢菌II的新的和均匀的金属尺度II。铁和α元素的丰度

A new and homogeneous metallicity scale for Galactic classical Cepheids II. The abundance of iron and alpha elements

论文作者

da Silva, R., Crestani, J., Bono, G., Braga, V. F., D'Orazi, V., Lemasle, B., Bergemann, M., Dall'Ora, M., Fiorentino, G., François, P., Groenewegen, M. A. T., Inno, L., Kovtyukh, V., Kudritzki, R. -P., Matsunaga, N., Monelli, M., Pietrinferni, A., Porcelli, L., Storm, J., Tantalo, M., Thévénin, F.

论文摘要

经典的头孢虫是年轻恒星种群的最流行的距离指标和示踪剂。关键优势是它们是明亮的,并且可以在本地组和本地体积星系中轻松识别。它们的进化和脉动特性取决于它们的化学丰度。这项调查的主要目的是使用高光谱分辨率(r $ \ sim $ 40,000-115,000)和高S/N光谱($ \ sim $ 400)对两个校准的银河系头进行新的精确丰度分析,以覆盖整个脉动周期。我们将注意力集中在影响大气参数估计和脉动周期元素丰度估计的可能系统上。我们通过基于实验室测量和删除混合或在脉动周期中显示丰度变化的线的方法,通过使用原子过渡参数清理了线列表。我们开发的光谱方法使大气参数的变化($σ$($ t _ {\ rm eff} $)$ \ sim $ 50 k,$σ$($ \ log {g} $ \ sim $ 0.2 dex和$σ$ 0.2 $ 0.2 km) ($ \ Lessim $ 0.05 DEX)和Alpha Elements($ \ Lessim $ 0.10 DEX)在整个脉动周期中。我们还通过将校准的头孢菌拆分为四个不同的时期箱,从短到长时间,提供了新的和准确的有效温度模板。对于每个周期bin,我们进行了一个分析拟合,其傅立叶系列提供$θ= 5040/{t _ {\ rm eff}} $作为脉动阶段的函数。当前的发现是一种很好的viaticum,可通过使用经典的头孢虫和基本的垫脚石来追踪银河薄盘的化学富集,以进一步研究典型的麦芽素化头的金属贫困状态。

Classical Cepheids are the most popular distance indicators and tracers of young stellar populations. The key advantage is that they are bright and they can be easily identified in Local Group and Local Volume galaxies. Their evolutionary and pulsation properties depend on their chemical abundances. The main aim of this investigation is to perform a new and accurate abundance analysis of two tens of calibrating Galactic Cepheids using high spectral resolution (R$\sim$40,000-115,000) and high S/N spectra ($\sim$400) covering the entire pulsation cycle. We focus our attention on possible systematics affecting the estimate of atmospheric parameters and elemental abundances along the pulsation cycle. We cleaned the line list by using atomic transition parameters based on laboratory measurements and by removing lines that are either blended or display abundance variations along the pulsation cycle. The spectroscopic approach that we developed brings forward small dispersions in the variation of the atmospheric parameters ($σ$($T_{\rm eff}$)$\sim$50 K, $σ$($\log{g}$)$\sim$0.2 dex, and $σ$($ξ$)$\sim$0.2 km/s) and in the abundance of both iron ($\lesssim$ 0.05 dex) and alpha elements ($\lesssim$0.10 dex) over the entire pulsation cycle. We also provide new and accurate effective temperature templates by splitting the calibrating Cepheids into four different period bins, ranging from short to long periods. For each period bin, we performed an analytical fit with Fourier series providing $θ= 5040/{T_{\rm eff}}$ as a function of the pulsation phase. The current findings are a good viaticum to trace the chemical enrichment of the Galactic thin disk by using classical Cepheids and a fundamental stepping stone for further investigations into the more metal-poor regime typical of Magellanic Cepheids.

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