论文标题

在时期 - 亮度 - 金属性关系的经典状态关系

On the Period--Luminosity--Metallicity relation of Classical Cepheids

论文作者

Ripepi, V., Catanzaro, G., Molinaro, R., Marconi, M., Clementini, G., Cusano, F., De Somma, G., Leccia, S., Musella, I., Testa, V.

论文摘要

经典的头孢虫(DCEP)是外乳距距离尺度的最重要的主要指标。建立对周期和周期的金属性的依赖性 - wesenheit(pl/pw)关系对哈勃常数的估计(h $ _0 $)产生了深远的影响。我们旨在研究银河系DCEP的PL/PW关系的金属丰度([Fe/H])的依赖性。我们结合了专有和文献光度和光谱数据,收集了413个银河系DCEP的总样本(372个基本模式 - DCEP \ _F和41个第一个繁殖 - DCEP \ _1O),并构建了新的金属性依赖性依赖金属/pW关系的新属性(nir),采用了sattric的太空。我们发现与大麦哲伦云关系相比,银河系dceps的PL $(k_s)$和pw $(j,k_s)$关系的斜率可能取决于金属性。因此,我们使用PL/PW关系的广义形式同时考虑了斜率的金属性依赖性和这些关系的拦截。我们计算了PL/PW关系,该关系首次明确包括斜率和截距项的金属依赖性。尽管可用数据的质量不足使我们的结果尚未确定,但从方法论的角度来看它们是相关的。新关系与大麦芽云的距离的几何测量相关,使我们能够估算{\ it gaia} dr2 parallax零点偏移$δ\ varpi $ = 0.0615 $ \ pm $ 0.004 $ 0.004来自DECEP的MAS,用于此工作。

Classical Cepheids (DCEPs) are the most important primary indicators for the extragalactic distance scale. Establishing the dependence on metallicity of their period--luminosity and period--Wesenheit (PL/PW) relations has deep consequences on the estimate of the Hubble constant (H$_0$). We aim at investigating the dependence on metal abundance ([Fe/H]) of the PL/PW relations for Galactic DCEPs. We combined proprietary and literature photometric and spectroscopic data, gathering a total sample of 413 Galactic DCEPs (372 fundamental mode -- DCEP\_F and 41 first overtone -- DCEP\_1O) and constructed new metallicity-dependent PL/PW relations in the near infra-red (NIR) adopting the Astrometric Based Luminosity. We find indications that the slopes of the PL$(K_S)$ and PW$(J,K_S)$ relations for Galactic DCEPs might depend on metallicity when compared to the Large Magellanic Cloud relationships. Therefore, we have used a generalized form of the PL/PW relations to simultaneously take into account the metallicity dependence of the slope and intercept of these relations. We calculated PL/PW relations which, for the first time, explicitly include a metallicity dependence of both the slope and intercept terms. Although the insufficient quality of the available data makes our results not yet conclusive, they are relevant from a methodological point of view. The new relations are linked to the geometric measurement of the distance to the Large Magellanic Cloud and allowed us to estimate a {\it Gaia} DR2 parallax zero point offset $Δ\varpi$=0.0615$\pm$0.004 mas from the dataset of DCEPs used in this work.

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