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Exoplanet characterisation in the longest known resonant chain: the K2-138 system seen by HARPS

机译:已知最长的共振链中的系外行星表征:HARPS看到的K2-138系统

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The detection of low-mass transiting exoplanets in multiple systems brings new constraints to planetary formation and evolution processes and challenges the current planet formation theories. Nevertheless, only a mere fraction of the small planets detected by Kepler and K2 have precise mass measurements, which are mandatory to constrain their composition. We aim to characterise the planets that orbit the relatively bright star K2-138. This system is dynamically particular as it presents the longest chain known to date of planets close to the 3:2 resonance. We obtained 215 HARPS spectra from which we derived the radial-velocity variations of K2-138. Via a joint Bayesian analysis of both the K2 photometry and HARPS radial-velocities (RVs), we constrained the parameters of the six planets in orbit. The masses of the four inner planets, from b to e, are 3.1, 6.3, 7.9, and 13.0 M _(⊕)with a precision of 34, 20, 18, and 15%, respectively. The bulk densities are 4.9, 2.8, 3.2, and 1.8 g cm~(?3), ranging from Earth to Neptune-like values. For planets f and g, we report upper limits. Finally, we predict transit timing variations of the order two to six minutes from the masses derived. Given its peculiar dynamics, K2-138 is an ideal target for transit timing variation (TTV) measurements from space with the upcoming CHaracterizing ExOPlanet Satellite (CHEOPS) to study this highly-packed system and compare TTV and RV masses.
机译:在多个系统中探测低质量的过渡系外行星给行星形成和演化过程带来了新的限制,并挑战了当前的行星形成理论。尽管如此,开普勒和K2探测到的小行星中只有一小部分具有精确的质量测量值,这对于限制其组成是必不可少的。我们旨在表征绕过相对明亮的恒星K2-138的行星。该系统在动力学方面特别独特,因为它呈现了迄今为止已知的最长链,接近3:2共振。我们获得了215个HARPS光谱,从中可以得出K2-138的径向速度变化。通过对K2光度法和HARPS径向速度(RVs)的联合贝叶斯分析,我们限制了在轨六颗行星的参数。从b到e的四个内部行星的质量分别为3.1、6.3、7.9和13.0 M _(⊕),精度分别为34%,20%,18%和15%。堆密度为4.9、2.8、3.2和1.8g cm〜(?3),范围从地球到海王星样的值。对于行星f和g,我们报告了上限。最后,我们预测了从产生的质量大约2到6分钟左右的运输时间变化。鉴于其独特的动力学特性,K2-138是即将到来的Characterizing ExOPlanet卫星(CHEOPS)从太空进行运输时间变化(TTV)测量的理想目标,以研究这个高度包装的系统并比较TTV和RV质量。

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