论文标题
Leavitt Law(C- METALL)中的头孢质金属性:ii。金属差的银河系最差的甲壳虫的高分辨率光谱
Cepheid Metallicity in the Leavitt Law (C- MetaLL) survey: II.High-resolution spectroscopy of the most metal poor Galactic Cepheids
论文作者
论文摘要
经典的头孢虫(DCEP)是校准阶梯校准的第一步。此外,它们在银河研究的背景下代表了强大的示踪剂。我们已经使用UVE@VLT收集了高分辨率光谱,以65个DCEP的样本。他们中的大多数是有史以来最微弱的DCEP。对于每个目标,我们得出了24种不同物种的准确大气参数,径向速度和丰度。由此产生的铁丰度在+0.3至$ -1.1 $ -1.1 dex之间,大部分恒星处于[Fe/H] $ \ sim-0.5 $ dex。我们的样本包括到目前为止使用高分辨率光谱观察到的最贫穷的DCEP。我们将样本补充文献数据,获得637个DCEP的完整样本,并使用Gaia早期数据版本3(EDR3)光度法来确定DCEP与周期 - wesenheit-letallicity关系的距离。我们更多的外部数据追踪外臂(在GalactCentric Radius($ r_ {GC})\ SIM $ 16--18 kpc),似乎显着扭曲。我们使用此大型样品研究了银河盘的金属梯度,找到了$ -0.060 \ pm 0.002 $ dex kpc $^{ - 1} $的坡度,与以前基于DCEPS和开放群集的结果非常吻合。我们还报告了梯度的可能中断,分别是$ r_ {gc} $ = 9.25 kpc,斜率分别为$ -0.063 \ pm 0.007 $和$ -0.079 \ pm 0.003 $ dex kpc $^{ - 1} $,分别用于内部和外部样品。这两个斜率差异超过1 $σ$。需要一个更均匀和扩展的DCEP样本,以进一步测试这种断裂的合理性。
Classical Cepheids (DCEPs) are the first fundamental step in the calibration of the cosmological distance ladder. Furthermore, they represent powerful tracers in the context of Galactic studies. We have collected high-resolution spectroscopy with UVES@VLT for a sample of 65 DCEPs. The majority of them are the faintest DCEPs ever observed in the Milky Way. For each target, we derived accurate atmospheric parameters, radial velocities, and abundances for 24 different species. The resulting iron abundances range between +0.3 and $-$1.1 dex with the bulk of stars at [Fe/H]$\sim-0.5$ dex. Our sample includes the most metal-poor DCEPs observed so far with high-resolution spectroscopy. We complement our sample with literature data obtaining a complete sample of 637 DCEPs and use Gaia Early Data Release 3 (EDR3) photometry to determine the distance of the DCEPs from the Period-Wesenheit-Metallicity relation. Our more external data trace the Outer arm (at Galactocentric radius ($R_{GC})\sim$16--18 kpc) which appears significantly warped. We investigate the metallicity gradient of the Galactic disc using this large sample, finding a slope of $-0.060 \pm 0.002$ dex kpc$^{-1}$, in very good agreement with previous results based both on DCEPs and open clusters. We also report a possible break in the gradient at $R_{GC}$=9.25 kpc with slopes of $-0.063 \pm 0.007$ and $-0.079 \pm 0.003$ dex kpc$^{-1}$ for the inner and outer sample, respectively. The two slopes differ by more than 1 $σ$. A more homogeneous and extended DCEPs sample is needed to further test the plausibility of such a break.