首页> 外文OA文献 >Measuring Transit Signal Recovery in the Kepler Pipeline. III. Completeness of the Q1–Q17 DR24 Planet Candidate Catalogue with Important Caveats for Occurrence Rate Calculations
【2h】

Measuring Transit Signal Recovery in the Kepler Pipeline. III. Completeness of the Q1–Q17 DR24 Planet Candidate Catalogue with Important Caveats for Occurrence Rate Calculations

机译:在开普勒管道中测量运输信号的恢复。三, Q1-Q17 DR24行星候选目录的完整性,带有发生率计算的重要警告

摘要

With each new version of the Kepler pipeline and resulting planet candidate catalog, an updated measurement of the underlying planet population can only be recovered with a corresponding measurement of the Kepler pipeline detection efficiency. Here we present measurements of the sensitivity of the pipeline (version 9.2) used to generate the Q1–Q17 DR24 planet candidate catalog. We measure this by injecting simulated transiting planets into the pixel-level data of 159,013 targets across the entire Kepler focal plane, and examining the recovery rate. Unlike previous versions of the Kepler pipeline, we find a strong period dependence in the measured detection efficiency, with longer (>40 day) periods having a significantly lower detectability than shorter periods, introduced in part by an incorrectly implemented veto. Consequently, the sensitivity of the 9.2 pipeline cannot be cast as a simple one-dimensional function of the signal strength of the candidate planet signal, as was possible for previous versions of the pipeline. We report on the implications for occurrence rate calculations based on the Q1–Q17 DR24 planet candidate catalog, and offer important caveats and recommendations for performing such calculations. As before, we make available the entire table of injected planet parameters and whether they were recovered by the pipeline, enabling readers to derive the pipeline detection sensitivity in the planet and/or stellar parameter space of their choice.
机译:对于开普勒管道的每个新版本和生成的候选行星目录,只有通过对开普勒管道探测效率进行相应的测量,才能恢复对底层行星总数的更新度量。在这里,我们介绍了用于生成Q1-Q17 DR24行星候选目录的管道(版本9.2)敏感性的测量。我们通过在整个开普勒焦平面上将模拟的过境行星注入到159,013个目标的像素级数据中并检查恢复率来进行测量。与开普勒管道的先前版本不同,我们发现所测得的检测效率与周期具有很强的依赖性,较长(> 40天)的周期的可检测性明显低于较短周期,这部分是由于不正确实施否决权引起的。因此,9.2管道的灵敏度不能像候选管道信号的早期版本那样,被转换为候选行星信号的信号强度的简单一维函数。我们根据Q1-Q17 DR24行星候选目录报告了发生率计算的含义,并提供了进行此类计算的重要警告和建议。和以前一样,我们提供了整个已注入行星参数表以及它们是否被管道回收的信息,从而使读者能够得出他们所选择的行星和/或恒星参数空间中管道探测的灵敏度。

相似文献

  • 外文文献

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号