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首页> 外文期刊>The Astrophysical Journal. Letters >The Equilibrium Temperature of Planets in Elliptical Orbits
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The Equilibrium Temperature of Planets in Elliptical Orbits

机译:椭圆轨道中行星平衡温度

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There exists a positive correlation between orbital eccentricity and the average stellar flux that planets receive from their parent star. Often, though, it is assumed that the average equilibrium temperature would correspondingly increase with eccentricity. Here, we test this assumption by calculating and comparing analytic solutions for both the spatial and temporal averages of orbital distance, stellar flux, and equilibrium temperature. Our solutions show that the average equilibrium temperature of a planet, with a constant albedo, slowly decreases with eccentricity until converging to a value 90% that of a circular orbit. This might be the case for many types of planets (e. g., hot Jupiters); however, the actual equilibrium and surface temperature of planets also depend on orbital variations of albedo and greenhouse. Our results also have implications in understanding the climate, habitability, and the occurrence of potential Earth-like planets. For instance, it helps explain why the limits of the habitable zone for planets in highly elliptical orbits are wider than expected from the mean flux approximation, as shown by climate models.
机译:轨道偏心与行星从其父母恒星接收的平均恒星通量存在正相关性。然而,通常,假设平均平衡温度与偏心相应地增加。在这里,我们通过计算和比较轨道距离,恒星通量和平衡温度的空间和时间平均值来测试和比较分析解决方案。我们的解决方案表明,具有恒定的Albedo的行星的平均平衡温度随着偏心慢慢减少,直到融合到圆形轨道的值90%。这可能是许多类型的行星(例如,热的Jupiters)的情况;然而,行星的实际平衡和表面温度也取决于Albedo和温室的轨道变化。我们的结果也对了解气候,居民和潜在的地球状行星的发生方面具有含义。例如,它有助于解释为什么在气候模型所示的平均通量近似下,高度椭圆轨道的行星的适当区域限制的限制,如气候模型所示。

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