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首页> 外文期刊>Astronomy and astrophysics >Mercury-T: A new code to study tidally evolving multi-planet systems. Applications to Kepler-62
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Mercury-T: A new code to study tidally evolving multi-planet systems. Applications to Kepler-62

机译:Mercury-T:研究潮汐式多行星系统的新代码。开普勒62的应用

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摘要

A large proportion of observed planetary systems contain several planets in a compact orbital configuration, and often harbor at least one close-in object. These systems are then most likely tidally evolving. We investigate how the effects of planet-planet interactions influence the tidal evolution of planets. We introduce for that purpose a new open-source addition to the MercuryN-body code, Mercury-T, which takes into account tides, general relativity and the effect of rotation-induced flattening in order to simulate the dynamical and tidal evolution of multi-planet systems. It uses a standard equilibrium tidal model, the constant time lag model. Besides, the evolution of the radius of several host bodies has been implemented (brown dwarfs, M-dwarfs of mass 0.1 M⊙, Sun-like stars, Jupiter). We validate the new code by comparing its output for one-planet systems to the secular equations results. We find that this code does respect the conservation of total angular momentum. We applied this new tool to the planetary system Kepler-62. We find that tides influence the stability of the system in some cases. We also show that while the four inner planets of the systems are likely to have slow rotation rates and small obliquities, the fifth planet could have a fast rotation rate and a high obliquity. This means that the two habitable zone planets of this system, Kepler-62e ad f are likely to have very different climate features, and this of course would influence their potential at hosting surface liquid water.
机译:观察到的大部分行星系统包含数个处于紧凑轨道构型的行星,并且通常包含至少一个近距离物体。然后,这些系统很可能在潮流上发展。我们研究行星-行星相互作用的影响如何影响行星的潮汐演化。为此,我们在MercuryN体代码Mercury-T中引入了一个新的开放源代码,它考虑了潮汐,广义相对论和旋转诱发的展平效应,以模拟多点运动的动力和潮汐演化。行星系统。它使用标准潮汐模型,恒定时滞模型。此外,已经实现了几种宿主体半径的演变(棕矮星,质量为0.1M⊙的M矮星,太阳状恒星,木星)。我们通过将单行星系统的输出与世俗方程的结果进行比较来验证新代码。我们发现该代码确实尊重总角动量的守恒。我们将此新工具应用于行星系统Kepler-62。我们发现潮汐在某些情况下会影响系统的稳定性。我们还表明,虽然系统的四个内部行星可能具有较慢的转速和较小的倾斜度,但第五个行星可能具有较快的转速和较高的倾斜度。这意味着该系统的两个宜居带行星Kepler-62e ad f可能具有非常不同的气候特征,这当然会影响它们在容纳地表液态水方面的潜力。

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