GALAH调查:利用银河考古学来完善我们对TESS目标恒星的认识

Jake T. Clark, Mathieu Clerté, N. Hinkel, C. Unterborn, R. Wittenmyer, J. Horner, D. Wright, B. Carter, T. Morton, L. Spina, M. Asplund, S. Buder, J. Bland-Hawthorn, A. Casey, G. D. De Silva, V. D’Orazi, L. Duong, M. Hayden, K. Freeman, J. Kos, G. Lewis, Jane Lin, K. Lind, S. Martell, Sanjib Sharma, J. Simpson, D. Zucker, T. Zwitter, C. Tinney, Yuan-Sen Ting (丁源森), T. Nordlander, A. Amarsi
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引用次数: 9

摘要

凌日系外行星巡天卫星(TESS)发现了数量空前的系外行星。确定这些系外行星的轨道参数,特别是它们的质量和半径,将在很大程度上取决于测量到的它们的宿主恒星的物理特性。我们交叉匹配了来自GALAH数据发布2、TESS输入目录和Gaia数据发布2的光谱、光度和天体测量数据,为47285颗恒星创建了一个精心设计的、自一致的物理和化学特性目录。利用这些数据,我们得到了精确到5%以内的等时线质量和半径。我们已经修改了3个已确认的和12个候选的TESS行星系统的参数。这些结果使人们对CTOI-20125677是否确实是一个行星系统产生了怀疑,因为修正后的行星半径现在与恒星大小相当。我们的GALAH-TESS目录包含多达23种元素的丰度。我们专门分析了C/O, Mg/Si, Fe/Si和Fe/Mg的摩尔比,以帮助确定$R_p < 4R_\oplus$的行星的组成和结构。从这些比值来看,36%落在太阳/地球值的2西格玛范围内,这表明这些恒星可能拥有岩石系外行星,其地质成分与我们太阳系内发现的行星相似。
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The GALAH Survey: using galactic archaeology to refine our knowledge of TESS target stars
An unprecedented number of exoplanets are being discovered by the Transiting Exoplanet Survey Satellite (TESS). Determining the orbital parameters of these exoplanets, and especially their mass and radius, will depend heavily upon the measured physical characteristics of their host stars. We have cross-matched spectroscopic, photometric, and astrometric data from GALAH Data Release 2, the TESS Input Catalog and Gaia Data Release 2, to create a curated, self-consistent catalog of physical and chemical properties for 47,285 stars. Using these data we have derived isochrone masses and radii that are precise to within 5\%. We have revised the parameters of three confirmed, and twelve candidate, TESS planetary systems. These results cast doubt on whether CTOI-20125677 is indeed a planetary system since the revised planetary radii are now comparable to stellar sizes. Our GALAH-TESS catalog contains abundances for up to 23 elements. We have specifically analysed the molar ratios for C/O, Mg/Si, Fe/Si and Fe/Mg, to assist in determining the composition and structure of planets with $R_p < 4R_\oplus$. From these ratios, 36% fall within 2 sigma of the Sun/Earth values, suggesting that these stars may host rocky exoplanets with geological compositions similar to planets found within our own Solar system.
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