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Detection of Exomoons Inside the Habitable Zone

机译:检测可居住区内的外氮

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Since the discovery of the first exoplanets, those most adequate for life to begin and evolve have been sought. Due to observational bias, however, most of the discovered planets so far are gas giants, precluding their habitability. However, if these hot Jupiters are located in the habitable zones of their host stars, and if rocky moons orbit them, then these moons may be habitable. In this work, we present a model for planetary transit simulation considering the presence of moons around a planet. The moon orbit is considered to be circular and coplanar with the planetary orbit. The other physical and orbital parameters of the star, planet, and moon, can be adjusted in each simulation. It is possible to simulate as many successive transits as desired. Since the presence of spots on the surface of the star may produce a signal similar to that of the presence of a moon, our model also allows for the inclusion of starspots. The goal is to determine the criteria for detectability of moons using photometry with the CoRoT and Kepler telescopes taking into account the stellar activity.
机译:自从第一个外产上的发现以来,已经寻求最适合生命的那些,从而寻求开始和发展。然而,由于观察偏见,到目前为止,大多数发现的行星都是天然气巨头,排尿。但是,如果这些热的豪华师都位于其主持人星星的可居住区域,如果岩石卫星轨道轨道,那么这些卫星可能会居住。在这项工作中,我们提出了一种模型,用于考虑行星周围的卫星的存在。月亮轨道被认为是与行星轨道的圆形和共面。可以在每个模拟中调整星球,行星和月亮的其他物理和轨道参数。可以根据需要模拟尽可能多的连续转运。由于星形表面上的斑点的存在可能产生类似于月球存在的信号,因此我们的模型也允许包含星空。目标是使用测光与孔隙和孔望远镜来确定卫星的可检测性的标准,以考虑恒星活性。

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