论文标题

Ariel Stellar特征:I- 187 FGK Planet主机星星的均质恒星参数描述和验证该方法

Ariel stellar characterisation: I -- homogeneous stellar parameters of 187 FGK planet host stars Description and validation of the method

论文作者

Magrini, L., Danielski, C., Bossini, D., Rainer, M., Turrini, D., Benatti, S., Brucalassi, A., Tsantaki, M., Mena, E. Delgado, Sanna, N., Biazzo, K., Campante, T. L., Van der Swaelmen, M., Sousa, S. G., Helminiak, K. G., Neitzel, A. W., Adibekyan, V., Bruno, G., Casali, G.

论文摘要

2020年,欧洲航天局选择了阿里尔(Ariel)作为下一个加入天文台太空舰队的任务,以研究太阳系以外的行星。 Ariel将致力于一千个行星氛围的特征,以了解系外行星的形成方式以及它们的发展方式。为了实现最后的两个目标,所有行星都需要在自己的宿主恒星的背景下进行研究,而这反过来又必须以相同的技术进行分析。我们介绍了我们开发的光谱光度法方法是为了推断Ariel参考样品层1中已知宿主星的大气参数。我们的方法基于一种迭代方法,该方法结合了光谱分析,从{\ em gaia}数据中确定表面重力以及从等速线拟合中的恒星质量的测定。我们通过分析对照样本的分析验证了我们的方法,该样品由三个具有众所周知的年龄和金属性的开放群集的成员组成。我们测量了Ariel参考样品中187 f-G-K恒星的有效温度,TEFF,表面重力,登录和金属性[Fe/H]。我们介绍了样品的一般特性,包括它们的运动学,使我们能够将它们分开在薄盘和较厚的圆盘种群之间。在研究恒星本身及其行星系统的研究中,对宿主恒星的参数的同质确定至关重要。我们的分析系统地改善了与理论模型的一致性,并减少了群众估计中的不确定性(从0.21 +/- 0.30到0.10 +/- 0.02 m_sun),为Ariel联盟和整个天文学群落提供了有用的数据。

In 2020 the European Space Agency selected Ariel as the next mission to join the space fleet of observatories to study planets outside our Solar System. Ariel will be devoted to the characterisation of a thousand planetary atmospheres, for understanding what exoplanets are made of, how they formed and how they evolve. To achieve the last two goals all planets need to be studied within the context of their own host stars, which in turn have to be analysed with the same technique, in a uniform way. We present the spectro-photometric method we have developed to infer the atmospheric parameters of the known host stars in the Tier 1 of the Ariel Reference Sample. Our method is based on an iterative approach, which combines spectral analysis, the determination of the surface gravity from {\em Gaia} data, and the determination of stellar masses from isochrone fitting. We validated our approach with the analysis of a control sample, composed by members of three open clusters with well-known ages and metallicities. We measured effective temperature, Teff, surface gravity, logg, and the metallicity, [Fe/H], of 187 F-G-K stars within the Ariel Reference Sample. We presented the general properties of the sample, including their kinematics which allows us to separate them between thin and thick disc populations. A homogeneous determination of the parameters of the host stars is fundamental in the study of the stars themselves and their planetary systems. Our analysis systematically improves agreement with theoretical models and decreases uncertainties in the mass estimate (from 0.21+/-0.30 to 0.10+/-0.02 M_sun), providing useful data for the Ariel consortium and the astronomical community at large.

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