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Stability of inclined orbits of terrestrial planets in habitable zones

机译:宜居地带行星倾斜轨道的稳定性

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In long-term stability studies of terrestrial planets moving in the habitable zone (HZ) of a sun-like star, we distinguish four different configurations: (ⅰ) planets moving in binary star systems, (ⅱ) the inner type (where the gas giant moves outside the HZ), (ⅲ) the outer type (where the gas giant is closer to the star, than the HZ) and (ⅳ) the Trojan type (where the gas giant moves in the HZ). Since earlier calculations indicated, that the stability of the motion in the HZ also depends on the inclination of the terrestrial planet orbits, we present a detailed numerical investigation to show correlations between the eccentricity, the mass and the distance of the giant planet for various inclinations of the terrestrial planets. The orbital stability of the HZ was examined for all four configurations stated above. While we could find hardly any stable orbits for the first three types for inclinations higher than 40°, the Trojan planets can be stable up to an inclination of 60°. Additionally, we could also find some stabilizing effects of the inclination for the first three types. As dynamical model we used the elliptic restricted three-body problem, which consists of two massive and one mass-less body. This allows an application to all detected and future extrasolar single planet systems.
机译:在对类太阳恒星居住区(HZ)中移动的陆地行星进行的长期稳定性研究中,我们区分了四种不同的配置:(ⅰ)在双星系统中移动的行星,(ⅱ)内部类型(其中气体巨人移动到HZ之外),(ⅲ)外部类型(天然气巨人比HZ更靠近恒星)和(ⅳ)木马类型(天然气巨人在HZ中移动)。由于较早的计算表明,HZ中运动的稳定性还取决于地球行星轨道的倾斜度,因此我们进行了详细的数值研究,以显示不同倾角的巨型行星的离心率,质量和距离之间的相关性的行星。针对上述所有四种配置检查了HZ的轨道稳定性。对于倾斜度高于40°的前三种类型,我们几乎找不到稳定的轨道,但特洛伊木马行星的倾斜度最高可达60°。此外,我们还可以发现前三种类型的倾斜度有一些稳定作用。作为动力学模型,我们使用了椭圆约束三体问题,该问题由两个大质量体和一个无质量体组成。这允许将其应用于所有已检测到的以及未来的太阳系外单行星系统。

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