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The Chemical Signatures of Planetary Engulfment Events in Binary Systems

机译:二元系统行星吞噬事件的化学特征

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摘要

Planetary engulfment events involve the chemical assimilation of a planet into a star's external layer. This can cause a change in the chemical pattern of the stellar atmosphere in a way that mirrors the composition of the rocky object engulfed, with the refractory elements being more abundant than the volatiles. Due to these stellar chemical changes, planetary engulfment events can render the process of chemical tagging potentially inaccurate. A line-by-line differential analysis of twin stars in wide binary systems allows us to test the chemical homogeneity of these associations with typical individual stellar Fe i uncertainties of 0.01 dex and eventually unveil chemical anomalies that could be attributed to planetary engulfment events. Out of the 14 systems analyzed here, we report the discovery of the most chemically inhomogeneous system to date (HIP 34407/HIP 34426). The median difference in abundances of refractory elements within the pair is 0.19 dex and the trend between the differential abundances and condensation temperature suggests that the anomaly is likely due to a planetary engulfment event. Within our sample, five other chemically anomalous systems are found.
机译:行星嘴嘴事件涉及将行星的化学同化分化到星形外层中。这可能导致恒星气氛的化学模式的变化,以反映吞噬的岩石物体的组成,耐火元件比挥发物更丰富。由于这些恒星化学变化,行星串嘴事件可以使化学标记的过程可能不准确。在宽二元系统中的双星逐行差分分析使我们能够以典型的单独的恒星Fe I不确定性测试这些关联的化学均匀性,最终揭示可能归因于行星吞噬事件的化学异常。在此处分析的14个系统中,我们向迄今为止发现最具化学不均匀系统的发现(HIP 34407 / HIP 34426)。该对内的耐火元件丰富的中值差异为0.19℃,差动丰度和冷凝温度之间的趋势表明,异常可能导致行星串序列事件。在我们的样品中,发现了五种其他化学异常系统。

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