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Alignment of the stellar spin with the orbits of a three-planet system

机译:恒星自旋与三行星系统轨道的对准

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摘要

The Sun’s equator and the planets’ orbital planes are nearly aligned, which is presumably a consequence of their formation from a single spinning gaseous disk. For exoplanetary systems this well-aligned configuration is not guaranteed: dynamical interactions may tilt planetary orbits, or stars may be misaligned with the protoplanetary disk through chaotic accretion, magnetic interactions or torques from neighbouring stars. Indeed, isolated ‘hot Jupiters’ are often misaligned and even orbiting retrograde. Here we report an analysis of transits of planets over starspots on the Sun-like star Kepler-30 (ref. 8), and show that the orbits of its three planets are aligned with the stellar equator. Furthermore, the orbits are aligned with one another to within a few degrees. This configuration is similar to that of our Solar System, and contrasts with the isolated hot Jupiters. The orderly alignment seen in the Kepler-30 system suggests that high obliquities are confined to systems that experienced disruptive dynamical interactions. Should this be corroborated by observations of other coplanar multi-planet systems, then star–disk misalignments would be ruled out as the explanation for the high obliquities of hot Jupiters, and dynamical interactions would be implicated as the origin of hot Jupiters.
机译:太阳的赤道和行星的轨道平面几乎对齐,这大概是由于它们是由一个旋转的气态盘形成的结果。对于系外行星系统,不能保证这种良好对齐的配置:动力学相互作用可能会使行星轨道倾斜,或者由于混沌积聚,磁相互作用或来自邻近恒星的扭矩,恒星可能与原行星盘未对准。确实,孤立的“炽热木星”通常会错位,甚至会逆行。在这里,我们报告了对一颗类似太阳的恒星开普勒30号(参考文献8)上恒星在行星上的过渡过程的分析,并显示了其三个行星的轨道与恒星赤道对齐。此外,轨道在几度内彼此对准。这种配置类似于我们的太阳系,与孤立的热木星形成对比。开普勒30系统中看到的有序排列表明,高倾斜度仅限于经历破坏性动力相互作用的系统。如果可以通过观察其他共面多行星系统来证实这一点,那么星盘不对中将被排除作为热木星高度倾斜的解释,而动力相互作用将被认为是热木星的起源。

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