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Simultaneous follow-up of planetary transits: revised physical properties for the planetary systems HAT-P-16 and WASP-21

机译:行星过境的同步跟踪:修改了HAT-P-16和WASP-21行星系统的物理性质

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Context. By now, more than 300 planets transiting their host star have been found, and much effort is being put into measuring the properties of each system. Light curves of planetary transits often contain deviations from a simple transit shape, and it is generally difficult to differentiate between anomalies of astrophysical nature (e.g. starspots) and correlated noise due to instrumental or atmospheric effects. Our solution is to observe transit events simultaneously with two telescopes located at different observatories. Aims. Using this observational strategy, we look for anomalies in the light curves of two transiting planetary systems and accurately estimate their physical parameters. Methods. We present the first photometric follow-up of the transiting planet HAT-P-16?b, and new photometric observations of WASP-21?b, obtained simultaneously with two medium-class telescopes located in different countries, using the telescope defocusing technique. We modeled these and other published data in order to estimate the physical parameters of the two planetary systems. Results. The simultaneous observations did not highlight particular features in the light curves, which is consistent with the low activity levels of the two stars. For HAT-P-16, we calculated a new ephemeris and found that the planet is 1.3σ colder and smaller (Rb?=?1.190?±?0.037 RJup) than the initial estimates, suggesting the presence of a massive core. Our physical parameters for this system point toward a younger age than previously thought. The results obtained for WASP-21 reveal lower values for the mass and the density of the planet (by 1.0 and 1.4σ respectively) with respect to those found in the discovery paper, in agreement with a subsequent study. We found no evidence of any transit timing variations in either system.
机译:上下文。到现在为止,已经发现了超过300个行星从其主恒星中经过,并且正在花费很多精力来测量每个系统的性质。行星过境的光曲线通常包含与简单的过境形状的偏差,并且通常很难区分天体物理性质的异常(例如星点)和由于仪器或大气效应引起的相关噪声。我们的解决方案是使用位于不同天文台的两台望远镜同时观察过境事件。目的使用这种观测策略,我们在两个正在运行的行星系统的光曲线中寻找异常,并准确地估计了它们的物理参数。方法。我们介绍了过渡行星HAT-P-16?b的首次光度学跟踪,以及使用望远镜散焦技术与位于不同国家的两台中型望远镜同时获得的WASP-21?b的新光度学观测结果。我们对这些数据和其他已发布的数据进行了建模,以估计两个行星系统的物理参数。结果。同时观测没有突出光曲线中的特定特征,这与两颗恒星的低活动度相一致。对于HAT-P-16,我们计算了一个新的星历,发现该行星比初始估计的温度低1.3σ(Rb?=?1.190?±?0.037 RJup),表明存在大质量核。我们针对该系统的物理参数表明年龄比以前认为的要年轻。 WASP-21的结果表明,与发现文件中发现的质量和密度相比,行星的质量和密度的值较低(分别为1.0和1.4σ),与后续研究一致。我们没有发现任何证据表明这两个系统中的任何运输时间都有变化。

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