论文标题

已知系外星宿主Star HD 222076的苔丝星形震分析

TESS Asteroseismic Analysis of the Known Exoplanet Host Star HD 222076

论文作者

Jiang, Chen, Bedding, Timothy R., Stassun, Keivan G., Veras, Dimitri, Corsaro, Enrico, Buzasi, Derek L., Mikołajczyk, Przemysław, Qian-sheng, Zhang, Jian-wen, Ou, Campante, Tiago L., Rodrigues, Thaíse S., Nsamba, Benard, Bossini, Diego, Kane, Stephen R., Ong, Jia Mian Joel, Yıldız, Mutlu, Orhan, Zeynep Çeiik, Örtel, Sibel, Wu, Tao, Zhang, Xinyi, Li, Tanda, Basu, Sarbani, Cunha, Margarida S., Christensen-Dalsgaard, Jørgen, Chaplin, William J.

论文摘要

过境系外行星调查卫星(TESS)是一个全天候的调查任务,旨在寻找横向明亮恒星的系外行星。 TESS的高质量光度数据非常适合类似太阳能恒星的纯种震中研究。在这项工作中,我们对红色巨星HD 〜222076进行了一个小星震分析,该恒星〜222076拥有长期(2.4年)巨型行星,该行星是通过径向速度发现的。 Tess首次检测到HD〜222076的太阳能振荡〜222076。使用全局的呼吸震动参数作为输入,产生恒星质量的确定($ m_ \ star = 1.12 \ pm 0.12 \,m_ \ odot $),半径($ r_ \ star = 4.34 \ pm 0.21 \ pm _ \ odot $),$ 2.从以前的研究中得到改善。从观察到的功率谱中提取的偶极混合模式的周期间距表明,恒星位于红色巨型分支上,燃烧在芯周围的壳中。我们发现,在到达红色巨型分支的尖端之前,地球不会逃脱恒星的潮汐吸引,并在$ 800 \ $ 800 \ $ 800 \ $ MYR之内吞没。

The Transiting Exoplanet Survey Satellite (TESS) is an all-sky survey mission aiming to search for exoplanets that transit bright stars. The high-quality photometric data of TESS are excellent for the asteroseismic study of solar-like stars. In this work, we present an asteroseismic analysis of the red-giant star HD~222076 hosting a long-period (2.4 yr) giant planet discovered through radial velocities. Solar-like oscillations of HD~222076 are detected around $203 \, μ$Hz by TESS for the first time. Asteroseismic modeling, using global asteroseismic parameters as input, yields a determination of the stellar mass ($M_\star = 1.12 \pm 0.12\, M_\odot$), radius ($R_\star = 4.34 \pm 0.21\,R_\odot$), and age ($7.4 \pm 2.7\,$Gyr), with precisions greatly improved from previous studies. The period spacing of the dipolar mixed modes extracted from the observed power spectrum reveals that the star is on the red-giant branch burning hydrogen in a shell surrounding the core. We find that the planet will not escape the tidal pull of the star and be engulfed into it within about $800\,$Myr, before the tip of the red-giant branch is reached.

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