首页> 外文期刊>The Astrophysical journal >INFLUENCE OF STELLAR MULTIPLICITY ON PLANET FORMATION. IV. ADAPTIVE OPTICS IMAGING OF KEPLER STARS WITH MULTIPLE TRANSITING PLANET CANDIDATES
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INFLUENCE OF STELLAR MULTIPLICITY ON PLANET FORMATION. IV. ADAPTIVE OPTICS IMAGING OF KEPLER STARS WITH MULTIPLE TRANSITING PLANET CANDIDATES

机译:星形多重性对行星形成的影响。 IV。开普勒星具有多个过渡行星候选的自适应光学成像

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The Kepler mission provides a wealth of multiple transiting planet systems (MTPSs). The formation and evolution of multi-planet systems are likely to be influenced by companion stars given the abundance of multiple stellar systems. We study the influence of stellar companions by measuring the stellar multiplicity rate of MTPSs. We select 138 bright (KP 13.5) Kepler MTPSs and search for stellar companions with adaptive optics (AO) imaging data and archival radial velocity data. We obtain new AO images for 73 MTPSs. Other MTPSs in the sample have archival AO imaging data from the Kepler Community Follow-up Observation Program. From these imaging data, we detect 42 stellar companions around 35 host stars. For stellar separation 1 AU a 100 AU, the stellar multiplicity rate is 5.2 ± 5.0% for MTPSs, which is 2.8σ lower than 21.1 ± 2.8% for the control sample, i.e., the field stars in the solar neighborhood. We identify two origins for the deficit of stellar companions within 100 AU of MTPSs: (1) a suppressive planet formation and (2) the disruption of orbital coplanarity due to stellar companions. To distinguish between the two origins, we compare the stellar multiplicity rates of MTPSs and single transiting planet systems (STPSs). However, current data are not sufficient for this purpose. For 100 AU a 2000 AU, the stellar multiplicity rates are comparable for MTPSs (8.0 ± 4.0%), STPSs (6.4 ± 5.8%), and the control sample (12.5 ± 2.8%).
机译:开普勒任务提供了大量的多行星系统(MTPS)。考虑到多个恒星系统的丰富性,多行星系统的形成和演化可能会受到伴星的影响。我们通过测量MTPS的恒星多重性来研究恒星伴侣的影响。我们选择138个明亮(KP <13.5)开普勒MTPS,并使用自适应光学(AO)成像数据和档案径向速度数据搜索恒星伴星。我们获得了73 MTPS的新AO图像。样本中的其他MTPS具有来自开普勒社区后续观察计划的AO影像存档数据。从这些影像数据中,我们检测到35个寄主恒星周围的42个恒星伴星。对于1 AU <100 AU的恒星分离,MTPS的恒星多重率是5.2±5.0%,比对照样品的21.1±2.8%低2.8σ,即在太阳附近的场星。我们确定了100 AU MTPS内恒星伴星缺乏的两个根源:(1)抑制性行星形成和(2)由于恒星伴星而造成的轨道共面性的破坏。为了区分这两个起源,我们比较了MTPS和单行星系统(STPS)的恒星多重率。但是,当前数据不足以实现此目的。对于100 AU <2000 AU,恒星多重性对于MTPS(8.0±4.0%),STPS(6.4±5.8%)和对照样品(12.5±2.8%)是可比的。

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