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Revising the ages of planet-hosting stars

机译:修改行星托管恒星的年龄

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Aims. This article aims to measure the age of stars with planets (SWP) through stellar tracks and isochrones computed with the PAdova and TRieste Stellar Evolutionary Code (PARSEC). Methods. We developed algorithms based on two different techniques for determining the ages of field stars: isochrone placement and Bayesian estimation. Their application to a synthetic sample of coeval stars shows the intrinsic limits of each method. For instance, the Bayesian computation of the modal age tends to select the extreme age values in the isochrones grid. Therefore, we used the isochrone placement technique to measure the ages of 317 SWP. Results. We found that ~6% of SWP have ages lower than 0.5 Gyr. The age distribution peaks in the interval [1.5, 2) Gyr, then it decreases. However, ~7% of the stars are older than 11 Gyr. The Sun turns out to be a common star that hosts planets, when considering its evolutionary stage. Our SWP age distribution is less peaked and slightly shifted towards lower ages if compared with ages in the literature and based on the isochrone fit. In particular, there are no ages below 0.5 Gyr in the literature.
机译:目的本文旨在通过使用PAdova和TRieste恒星演化代码(PARSEC)计算的恒星轨迹和等时线来测量具有行星(SWP)的恒星的年龄。方法。我们基于两种不同的技术(用于确定野外恒星的年龄)开发了算法:等时线放置和贝叶斯估计。将它们应用到后代恒星的合成样品中显示了每种方法的固有局限性。例如,模态年龄的贝叶斯计算倾向于在等时网格中选择极限年龄值。因此,我们使用等时线放置技术来测量317 SWP的年龄。结果。我们发现〜6%的SWP年龄低于0.5 Gyr。年龄分布在[1.5,2)Gyr区间达到峰值,然后下降。但是,约7%的恒星年龄大于11 Gyr。考虑到其演化阶段,太阳原来是容纳行星的普通恒星。如果与文献中的年龄相比,并且基于等时线拟合,我们的SWP年龄分布不会达到峰值,而会略微偏向较低年龄。特别是,文献中没有低于0.5 Gyr的年龄。

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