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No evidence of the planet orbiting the extremely metal-poor extragalactic star HIP 13044

机译:没有证据表明行星绕极贫金属的河外恒星HIP 13044

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Context. The recent discovery of three giant planets orbiting the extremely metal-poor stars HIP 11952 and HIP 13044 have challenged theoretical predictions of the core-accretion model. According to this, the metal content of the protoplanetary disk from which giant planets are formed is a key ingredient for the early formation of planetesimals prior to the runaway accretion of the surrounding gas. Aims. We reanalyzed the original FEROS data that were used to detect the planets to prove or refute their existence, employing our new reduction and analysis methods. Methods. We applied the cross-correlation technique to FEROS spectra to measure the radial velocity variation of HIP 13044 and HIP 11952. We reached a typical precision of ~35 m?s-1? for HIP 13044 and ~25 m?s-1? for HIP 11952, which is significantly superior to the uncertainties presented previously. Results. We found no evidence of the planet orbiting the metal-poor extragalactic star HIP 13044. We show that given our radial velocity precision, and considering the large number of radial velocity epochs, the probability for a non-detection of the radial velocity signal recently claimed is lower than 10-4. Finally, we also confirm findings that the extremely metal-poor star HIP 11952 does not contain a system of two gas giant planets. These results reaffirm the expectations from the core-accretion model of planet formation.
机译:上下文。最近发现的三个巨型行星围绕着极贫金属的恒星HIP 11952和HIP 13044挑战了岩心积聚模型的理论预测。据此,形成巨大行星的原行星盘的金属含量是在周围气体失控积聚之前尽早形成小行星的关键因素。目的我们使用新的还原和分析方法,重新分析了用于检测行星以证明或反驳它们存在的原始FEROS数据。方法。我们将互相关技术应用于FEROS光谱,以测量HIP 13044和HIP 11952的径向速度变化。我们达到了〜35 m?s-1?的典型精度。用于HIP 13044和〜25 m?s-1? HIP 11952,明显优于之前提出的不确定性。结果。我们没有发现行星绕过贫金属银河系恒星HIP 13044的证据。我们证明,鉴于我们的径向速度精度,并考虑到大量的径向速度历元,最近发现未检测到径向速度信号的可能性低于10-4。最后,我们还证实了以下发现:极贫金属的恒星HIP 11952不包含由两个气体巨行星组成的系统。这些结果重申了对行星形成核心积累模型的期望。

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