论文标题

缩放K2。 iii。广告系列5和开普勒的FGK样本中的可比行星出现

Scaling K2. III. Comparable Planet Occurrence in the FGK Samples of Campaign 5 and Kepler

论文作者

Zink, Jon K., Hardegree-Ullman, Kevin K., Christiansen, Jessie L., Petigura, Erik A., Dressing, Courtney D., Schlieder, Joshua E., Ciardi, David R., Crossfield, Ian J. M.

论文摘要

使用我们的K2广告系列5全自动行星检测数据集(43个行星),该数据集具有相应的完整性和可靠性度量,我们推断出FGK矮人样本(9,257星)的基础行星人群模型(9,257星)。为了实施损坏的幂律,我们发现一个总体行星的出现在$ 1.00^{+1.07} _ { - 0.51} $行星每星星$ 0.5-38天内。对开普勒样本(2,318个行星; 94,222星)进行类似的剪裁并进行了可比的分析,我们发现总体出现为$ 1.10 \ pm0.05 $每星星。由于Campaign 5字段距开普勒字段近120个角度,因此这种情况相似性提供了证据表明,开普勒样本可能为银河推理提供了良好的基线。此外,与K2运动5样品相比,开普勒恒星样品是金属富含金属的,因此发现出现平等性可能会降低金属性在行星形成中的作用。但是,在假设K2运动5样本的开普勒模型范围并仅优化行星出现因子时,发现了与金属驱动的形成一致的弱(1.5σ$)差异。这种薄弱的趋势表明,一旦提供了较大的均匀审查的K2行星候选者的样本,就必须对金属性依赖性事件进行进一步研究。

Using our K2 Campaign 5 fully automated planet detection data set (43 planets), which has corresponding measures of completeness and reliability, we infer an underlying planet population model for the FGK dwarfs sample (9,257 stars). Implementing a broken power-law for both the period and radius distribution, we find an overall planet occurrence of $1.00^{+1.07}_{-0.51}$ planets per star within a period range of 0.5-38 days. Making similar cuts and running a comparable analysis on the Kepler sample (2,318 planets; 94,222 stars), we find an overall occurrence of $1.10\pm0.05$ planets per star. Since the Campaign 5 field is nearly 120 angular degrees away from the Kepler field, this occurrence similarity offers evidence that the Kepler sample may provide a good baseline for Galactic inferences. Furthermore, the Kepler stellar sample is metal-rich compared to the K2 Campaign 5 sample, thus a finding of occurrence parity may reduce the role of metallicity in planet formation. However, a weak ($1.5σ$) difference, in agreement with metal-driven formation, is found when assuming the Kepler model power-laws for the K2 Campaign 5 sample and optimizing only the planet occurrence factor. This weak trend indicates further investigation of metallicity dependent occurrence is warranted once a larger sample of uniformly vetted K2 planet candidates are made available.

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