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Spin-orbit measurements and refined parameters for the exoplanet systems WASP-22 and WASP-26

机译:系外行星系统WASP-22和WASP-26的自旋轨道测量和精确参数

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We report on spectroscopic and photometric observations through transits of the exoplanets WASP-22b and WASP-26b, intended to determine the systems’ spin-orbit angles. We combine these data with existing data to refine the system parameters. We measure a sky-projected spin-orbit angle of 22?±?16° for WASP-22b, showing the planet’s orbit to be prograde and, perhaps, slightly misaligned. We do not detect the Rossiter-McLaughlin effect of WASP-26b due to its low amplitude and observation noise. We place 3-σ upper limits on orbital eccentricity of 0.063 for WASP-22b and 0.050 for WASP-26b. After refining the drift in the systemic velocity of WASP-22 found by Maxted et?al. (2010, AJ, 140, 2007), we find the third body in the system to have a minimum-mass of 5.3 ?±? 0.3?MJup (a3 / 5 AU)2, where a3 is the orbital distance of the third body.
机译:我们报告通过系外行星WASP-22b和WASP-26b的传播进行光谱学和光度学观察,目的是确定系统的自旋轨道角。我们将这些数据与现有数据结合起来以完善系统参数。我们对WASP-22b测得的空中投影自旋轨道角为22±±16°,这表明该行星的轨道正在推进,并且可能略有偏离。由于WASP-26b的振幅低和观察到的噪声,我们没有检测到Rossiter-McLaughlin效应。我们将WASP-22b的轨道偏心率的3-σ上限设置为0.063,WASP-26b的轨道偏心率设置为0.050。优化后,Maxted等人发现WASP-22的系统速度漂移。 (2010,AJ,140,2007),我们发现系统中的第三个物体的最小质量为5.3?±?。 0.3?MJup(a3 / 5 AU)2,其中a3是第三个物体的轨道距离。

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