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首页> 外文期刊>The Astrophysical journal >BEER ANALYSIS OF KEPLER AND CoRoT LIGHT CURVES. I. DISCOVERY OF KEPLER-76b: A HOT JUPITER WITH EVIDENCE FOR SUPERROTATION
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BEER ANALYSIS OF KEPLER AND CoRoT LIGHT CURVES. I. DISCOVERY OF KEPLER-76b: A HOT JUPITER WITH EVIDENCE FOR SUPERROTATION

机译:开普勒和CoRoT灯光曲线的啤酒分析。 I. KEPLER-76b的发现:带有过热证明的热木浆

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We present the first case in which the BEER algorithm identified a hot Jupiter in the Kepler light curve, and its reality was confirmed by orbital solutions based on follow-up spectroscopy. The companion Kepler-76b was identified by the BEER algorithm, which detected the BEaming (sometimes called Doppler boosting) effect together with the Ellipsoidal and Reflection/emission modulations (BEER), at an orbital period of 1.54 days, suggesting a planetary companion orbiting the 13.3 mag F star. Further investigation revealed that this star appeared in the Kepler eclipsing binary catalog with estimated primary and secondary eclipse depths of 5 × 10–3 and 1 × 10–4, respectively. Spectroscopic radial velocity follow-up observations with Tillinghast Reflector Echelle Spectrograph and SOPHIE confirmed Kepler-76b as a transiting 2.0 ± 0.26 M Jup hot Jupiter. The mass of a transiting planet can be estimated from either the beaming or the ellipsoidal amplitude. The ellipsoidal-based mass estimate of Kepler-76b is consistent with the spectroscopically measured mass while the beaming-based estimate is significantly inflated. We explain this apparent discrepancy as evidence for the superrotation phenomenon, which involves eastward displacement of the hottest atmospheric spot of a tidally locked planet by an equatorial superrotating jet stream. This phenomenon was previously observed only for HD 189733b in the infrared. We show that a phase shift of 103 ± 20 of the planet reflection/emission modulation, due to superrotation, explains the apparently inflated beaming modulation, resolving the ellipsoidal/beaming amplitude discrepancy. Kepler-76b is one of very few confirmed planets in the Kepler light curves that show BEER modulations and the first to show superrotation evidence in the Kepler band. Its discovery illustrates for the first time the ability of the BEER algorithm to detect short-period planets and brown dwarfs.
机译:我们介绍了BEER算法在开普勒光曲线中识别出一个热木星的第一种情况,并且其真实性已通过基于后续光谱的轨道解得到了证实。伴星Kepler-76b是通过BEER算法识别的,该算法在1.54天的轨道周期内检测到BEaming(有时称为多普勒增强)以及椭球和反射/发射调制(BEER)效应,表明行星伴星绕着13.3 mag F星。进一步的调查表明,这颗恒星出现在开普勒日蚀双星目录中,其一次和二次日蚀的估计深度分别为5×10–3和1×10–4。用Tillinghast Reflector Echelle光谱仪和SOPHIE进行的光谱径向速度后续观察证实Kepler-76b为过渡的2.0±0.26 M Jup热木星。可以根据波束方向或椭圆幅度来估算行星的质量。 Kepler-76b的基于椭球的质量估计与光谱测量的质量一致,而基于波束的估计明显被夸大了。我们将这种明显的差异解释为超旋转现象的证据,该现象涉及赤道超旋转射流使潮汐锁定行星的最热大气点向东移动。以前仅在HD 189733b中观察到此现象。我们显示,由于超旋转,行星反射/发射调制的相移为103±20,解释了明显膨胀的波束调制,从而解决了椭球/射束幅度差异。开普勒76b是开普勒光曲线中确认伯尔调制的极少数经证实的行星之一,也是开普勒带中最早显示超旋转证据的行星。它的发现首次说明了BEER算法检测短周期行星和棕矮星的能力。

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