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1:1 orbital resonance of circumbinary planets

机译:环绕行星的1:1轨道共振

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The recent detection of the third planet in Kepler-47 has shown that binary stars can host several planets in circumbinary orbits. To understand the evolution of these systems we have performed two-dimensional hydrodynamic simulations of the circumbinary disc with two embedded planets for several Kepler systems. In two cases, Kepler-47 and -413, the planets are captured in a 1:1 mean-motion resonance at the planet “parking position” near the inner edge of the disc. The orbits are fully aligned and have mean eccentricities of about 0.25 to 0.30; the planets are entangled in a horseshoe-type motion. Subsequent n-body simulations without the disc show that the configurations are stable. Our results point to the existence of a new class of stable resonant orbits around binary stars. It remains to be seen if such orbits exist in reality.
机译:最近在开普勒47号发现的第三颗行星表明,双星恒星可以在环绕轨道上承载多个行星。为了了解这些系统的发展,我们对几个开普勒系统进行了带有两个嵌入式行星的环绕盘的二维流体动力学模拟。在开普勒47号和-413号这两种情况下,行星在圆盘内缘附近的行星“停车位置”以1:1的平均运动共振被捕获。轨道完全对准,平均偏心距约为0.25至0.30;行星纠结成马蹄形运动。随后没有光盘的n体仿真表明配置是稳定的。我们的结果表明,存在围绕双星的新型稳定共振轨道。这种轨道是否现实存在还有待观察。

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