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首页> 外文期刊>The Astrophysical Journal. Letters >Do Close-in Giant Planets Orbiting Evolved Stars Prefer Eccentric Orbits?
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Do Close-in Giant Planets Orbiting Evolved Stars Prefer Eccentric Orbits?

机译:靠近巨型行星轨道演变的星星更喜欢偏心轨道吗?

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The NASA Kepler and K2 Missions have recently revealed a population of transiting giant planets orbiting moderately evolved, low-luminosity red giant branch stars. Here, we present radial velocity (RV) measurements of three of these systems, revealing significantly non-zero orbital eccentricities in each case. Comparing these systems with the known planet population suggests that close-in giant planets around evolved stars tend to have more eccentric orbits than those around main sequence stars. We interpret this as tentative evidence that the orbits of these planets pass through a transient, moderately eccentric phase where they shrink faster than they circularize due to tides raised on evolved host stars. Additional RV measurements of currently known systems, along with new systems discovered by the recently launched NASA Transiting Exoplanet Survey Satellite (TESS) mission, may constrain the timescale and mass dependence of this process.
机译:NASA开普勒和K2任务最近透露了一种巨型行星的人口,轨道适度发展,低光泽度红巨星星星。 这里,我们呈现三种这些系统的径向速度(RV)测量,在每种情况下揭示了显着的非零轨道偏心。 将这些系统与已知的行星人口进行比较表明,在进化的恒星周围的近距离行星倾向于具有比主要序列恒星周围更偏心的轨道。 我们将此解释为暂定证据,即这些行星的轨道通过瞬态,中等偏心的阶段,在那里它们的缩小速度比在演进的主恒星上升起的潮汐引起的潮汐缩短。 目前已知系统的额外RV测量以及最近推出的美国宇航局过境外产调查卫星(苔丝)任务所发现的新系统,可能会限制该过程的时间尺度和质量依赖。

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