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Confirmation of the radial velocity super-Earth K2-18c with HARPS and CARMENES ★★

机译:使用HARPS和CARMENES确认径向速度超地球K2-18c ★★

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In an earlier campaign to characterize the mass of the transiting temperate super-Earth K2-18b with HARPS, a second, non-transiting planet was posited to exist in the system at ~9 days. Further radial velocity follow-up with the CARMENES spectrograph visible channel revealed a much weaker signal at 9 days, which also appeared to vary chromatically and temporally, leading to the conclusion that the origin of the 9-day signal was more likely related to stellar activity than to a planetary presence. Here we conduct a detailed reanalysis of all available RV time-series – including a set of 31 previously unpublished HARPS measurements – to investigate the effects of time-sampling and of simultaneous modelling of planetary plus activity signals on the existence and origin of the curious 9-day signal. We conclude that the 9-day signal is real and was initially seen to be suppressed in the CARMENES data due to a small number of anomalous measurements, although the exact cause of these anomalies remains unknown. Investigation of the signal’s evolution in time with wavelength and detailed model comparison reveals that the 9-day signal is most likely planetary in nature. Using this analysis, we reconcile the conflicting HARPS and CARMENES results and measure precise and self-consistent planet masses of m _( p , b )= 8.63 ± 1.35 and m _( p , c )sin i _( c )= 5.62 ± 0.84 Earth masses. This work, along with the previously published RV papers on the K2-18 planetary system, highlights the importance of understanding the time-sampling and of modelling the simultaneous planet plus stochastic activity, particularly when searching for sub-Neptune-sized planets with radial velocities.
机译:在较早的一次利用HARPS表征过境温带超地球K2-18b的质量的运动中,假定系统在约9天之内就存在了第二个非过境行星。利用CARMENES光谱仪可见光通道进行的进一步径向速度追踪显示,在9天时信号弱得多,并且在色度和时间上似乎也有所变化,从而得出结论,认为9天信号的起源更可能与恒星活动有关而不是行星存在。在这里,我们对所有可用的RV时间序列进行了详细的重新分析-包括31个先前未发布的HARPS测量集-以研究时间采样以及同时对行星和活动信号进行建模对好奇号的存在和起源的影响9天信号。我们得出的结论是9天的信号是真实的,并且由于少量异常测量,最初在CARMENES数据中被抑制了,尽管这些异常的确切原因仍然未知。通过波长对信号随时间的变化进行的调查以及详细的模型比较发现,为期9天的信号实际上很可能是行星信号。使用此分析,我们调和了相互矛盾的HARPS和CARMENES结果,并​​测量了m _(p,b)= 8.63±1.35和m _(p,c)sin i _(c)= 5.62±的精确且自洽的行星质量0.84地球质量。这项工作以及先前发表的有关K2-18行星系统的RV论文,突出了理解时间采样以及对同时发生的行星和随机活动进行建模的重要性,特别是在寻找具有径向速度的次海王星大小的行星时。

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