论文标题

使用光度计算的开普勒样品确认已知的行星趋势

Confirming known planetary trends using a photometrically selected Kepler sample

论文作者

Hansen, Jonah T., Casagrande, Luca, Ireland, Michael J., Lin, Jane

论文摘要

系外行星及其宿主恒星特性的统计研究对于告知行星形成模型至关重要。尤其是来自丰富的开普勒数据集出现的许多趋势,包括在具有高金属性的恒星周围发现系外行星,并且在1.9 $ r_ \ oplus $的行星半径分布中存在“差距”。在这里,我们使用Apogee光谱调查对开普勒场进行了新的分析,以基于Gaia,2 Mass和Stromgren光度计来构建金属校准。该校准以及源自贝叶斯等同型拟合算法的质量和半径,用于测试许多这些趋势,这些趋势具有无偏见的,光度法得出的参数,尽管与最近的研究相比,样本量较小。我们恢复了该行星在更高的金属恒星周围更常见。在整个样本中,行星频率为$ 0.88 \ pm0.12 $%$ <0和$ 1.37 \ $ pm0.16 $ pm0.16 $%$ \ geq $ 0,但是在两个sigma下,我们发现epoplanets的大小会影响这种趋势的强度。我们还恢复了行星半径间隙,并与恒星质量略有正相关。我们得出的结论是,该方法显示出有望得出范围内范围的统计数据。我们还指出,GAIA DR3的分光光度法将具有类似于窄带过滤器的有效分辨率,并允许克服本研究固有的小样本量。

Statistical studies of exoplanets and the properties of their host stars have been critical to informing models of planet formation. Numerous trends have arisen in particular from the rich Kepler dataset, including that exoplanets are more likely to be found around stars with a high metallicity and the presence of a "gap" in the distribution of planetary radii at 1.9$R_\oplus$. Here we present a new analysis on the Kepler field, using the APOGEE spectroscopic survey to build a metallicity calibration based on Gaia, 2MASS and Stromgren photometry. This calibration, along with masses and radii derived from a Bayesian isochrone fitting algorithm, is used to test a number of these trends with unbiased, photometrically derived parameters, albeit with a smaller sample size in comparison to recent studies. We recover that planets are more frequently found around higher metallicity stars; over the entire sample, planetary frequencies are $0.88\pm0.12$ percent for [Fe/H]<0 and $1.37\pm0.16$ percent for [Fe/H]$\geq$0 but at two sigma we find that the size of exoplanets influences the strength of this trend. We also recover the planet radius gap, along with a slight positive correlation with stellar mass. We conclude that this method shows promise to derive robust statistics of exoplanets. We also remark that spectrophotometry from Gaia DR3 will have an effective resolution similar to narrow band filters and allow to overcome the small sample size inherent in this study.

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