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A giant planet beyond the snow line in microlensing eventudOGLE-2011-BLG-0251

机译:微透镜事件中超出雪线的巨型行星 udOGLE-2011-BLG-0251

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Aims. We present the analysis of the gravitational microlensing event OGLE-2011-BLG-0251. This anomalous event was observed by several survey and follow-up collaborations conducting microlensing observations towards the Galactic bulge.udMethods. Based on detailed modelling of the observed light curve, we find that the lens is composed of two masses with a mass ratio q = 1.9 × 10^(-3). Thanks to our detection of higher-order effects on the light curve due to the Earth’s orbital motion and the finite size of source, we are able to measure the mass and distance to the lens unambiguously.udResults. We find that the lens is made up of a planet of mass 0.53 ± 0.21 M_J orbiting an M dwarf host star with a mass of 0.26 ± 0.11 M_⊙. The planetary system is located at a distance of 2.57 ± 0.61 kpc towards the Galactic centre. The projected separation of the planet from its host star is d = 1.408 ± 0.019, in units of the Einstein radius, which corresponds to 2.72 ± 0.75 AU in physical units. We also identified a competitive model with similar planet and host star masses, but with a smaller orbital radius of 1.50 ± 0.50 AU. The planet is therefore located beyond the snow line of its host star, which we estimate to be around ~1−1.5 AU.
机译:目的我们目前对重力微透镜事件OGLE-2011-BLG-0251进行分析。这个异常事件是通过对银河系凸起进行微透镜观察的几次调查和后续合作观察到的。 udMethods。根据观察到的光曲线的详细建模,我们发现透镜由质量比为q = 1.9×10 ^(-3)的两个质量组成。由于我们检测到由于地球的轨道运动和光源的有限大小而对光曲线产生的高阶效应,因此我们能够明确地测量到透镜的质量和距离。 udResults。我们发现,该透镜由质量为0.53±0.21 M_J的行星组成,该行星绕着质量为0.26±0.11M_⊙的M矮星主星运行。行星系统距离银河系中心的距离为2.57±0.61 kpc。行星与其主恒星的预计间隔为d = 1.408±0.019,以爱因斯坦半径为单位,相当于物理单位为2.72±0.75 AU。我们还确定了具有相似行星和宿主恒星质量,但轨道半径为1.50±0.50 AU较小的竞争模型。因此,该行星位于其宿主恒星的雪线之外,我们估计其约为〜1-1.5 AU。

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    Kains N.; Kane S. R.;

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