论文标题

基于径向速度测量的KIC 5951458的单个传输的多种解释

Multiple Explanations for the Single Transit of KIC 5951458 based on Radial Velocity Measurements Extracted with a Novel Matched-template Technique

论文作者

Dalba, Paul A., Fulton, Benjamin, Isaacson, Howard, Kane, Stephen R., Howard, Andrew W.

论文摘要

显示单传输事件的行星系统是提高过境调查中长周期外行星产量的关键途径。从主要的开普勒任务中,KIC 5951458B(Kepler-456b)被认为是一个单质巨型行星,轨道周期为1310天。然而,从凯克望远镜上的雇用仪器中对KIC 5951458的径向速度(RV)观察表明,该系统更为复杂。为了为这款$ V \ of13 $ Star提取精确的RV,我们开发了一种新颖的匹配模板技术,该技术利用了用雇用获得的广泛模板光谱库。我们验证了这项技术,并测量其噪声底部为4-8 m s $^{ - 1} $(除了内部RV错误外,大多数恒星都针对精密RV。对于KIC 5951458,我们检测到长期的RV趋势,这表明存在轨道时期大于几千天的恒星伴侣。我们还检测到RVS中的额外信号,该信号可能是由行星或棕色矮人伴侣引起的,其质量在0.6-82 $ m _ {\ rm j} $和轨道周期低于几千天以下。奇怪的是,从手头的数据中,无法确定哪个对象引起了单个“运输”事件。我们演示了一套适中的RVS集合如何使我们能够更新此不寻常系统的属性,并预测未来观察的最佳时机。

Planetary systems that show single-transit events are a critical pathway to increasing the yield of long-period exoplanets from transit surveys. From the primary Kepler mission, KIC 5951458b (Kepler-456b) was thought to be a single-transit giant planet with an orbital period of 1310 days. However, radial velocity (RV) observations of KIC 5951458 from the HIRES instrument on the Keck telescope suggest that the system is far more complicated. To extract precise RVs for this $V\approx13$ star, we develop a novel matched-template technique that takes advantage of a broad library of template spectra acquired with HIRES. We validate this technique and measure its noise floor to be 4 - 8 m s$^{-1}$ (in addition to internal RV error) for most stars that would be targeted for precision RVs. For KIC 5951458, we detect a long-term RV trend that suggests the existence of a stellar companion with an orbital period greater than a few thousand days. We also detect an additional signal in the RVs that is possibly caused by a planetary or brown dwarf companion with mass in the range of 0.6 - 82 $M_{\rm J}$ and orbital period below a few thousand days. Curiously, from just the data on hand, it is not possible to determine which object caused the single "transit" event. We demonstrate how a modest set of RVs allows us to update the properties of this unusual system and predict the optimal timing for future observations.

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