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首页> 外文期刊>The astronomical journal >A Free-floating or Wide-orbit Planet in the Microlensing Event OGLE-2019-BLG-0551
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A Free-floating or Wide-orbit Planet in the Microlensing Event OGLE-2019-BLG-0551

机译:微溶剂事件ogle-2019-BLG-0551中的自由浮动或宽轨道行星

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High-cadence observations of the Galactic bulge by the microlensing surveys led to the discovery of a handful of extremely short-timescale microlensing events that can be attributed to free-floating or wide-orbit planets.Here, we report the discovery of another strong free-floating planet candidate, which was found from the analysis of the gravitational microlensing event OGLE-2019-BLG-0551.The light curve of the event is characterized by a very short duration (lesssim3 days) and a very small amplitude (lesssim0.1 mag).From modeling of the light curve, we find that the Einstein timescale, ${t}_{{m{E}}}=0.381pm 0.017$ day, is much shorter, and the angular Einstein radius, ${heta }_{{m{E}}}=4.35pm 0.34$ μas, is much smaller than those of typical lensing events produced by stellar-mass lenses (${t}_{{m{E}}}sim 20$ days, ${heta }_{{m{E}}}sim 0.3$ mas), indicating that the lens is very likely to be a planetary-mass object.We conduct an extensive search for possible signatures of a companion star in the light curve of the event, finding no significant evidence for the putative host star.For the first time, we also demonstrate that the angular Einstein radius of the lens does not depend on blending in the low-magnification events with strong finite source effects.
机译:通过导致了极短的时间尺度的微引力透镜事件极少数可以归因于自由浮动或宽轨planets.Here的发现微引力透镜调查银河隆起的高节奏观察,我们报告的另一个强大的免费的发现行星悬空候选,将其从所述重力微透镜事件OGLE-2019-BLG-0551.The事件的特点是非常短的持续时间(lesssim3天)的光曲线和一个非常小的幅度(lesssim0.1的分析发现MAG)。从光变曲线的造型,我们发现,爱因斯坦的时间表,$ {T】_ {{ RM {E}}} = 0.381 0.017下午$日子,是更短,角爱因斯坦半径,$ { THETA} _ {{ RM {E}}} = 4.35 下午0.34 $μas,比那些典型透镜事件由恒星质量透镜($ {吨}产生小得多_ {{ RM {E} }} 卡$ 20天,$ { THETA} _ {{ RM {E}}} SIM 0.3 $ MAS),表明该镜头很可能是行星质量object.We进行大范围的搜索可能的签名■在事件的光变曲线伴星的,发现没有显著的证据假定主机star.For第一次,我们也证明了镜头的角度爱因斯坦半径不依赖于低倍率勾兑事件具有很强的有限源的效果。

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