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首页> 外文期刊>The Astrophysical journal >BEYOND THE IRON PEAK: r- AND s-PROCESS ELEMENTAL ABUNDANCES IN STARS WITH PLANETS
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BEYOND THE IRON PEAK: r- AND s-PROCESS ELEMENTAL ABUNDANCES IN STARS WITH PLANETS

机译:铁尖峰之外:行星恒星中的r和s过程元素丰度

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摘要

We present elemental abundances of 118 stars (28 of which are known extrasolar planetary host stars) observed as part of the Anglo-Australian Planet Search. Abundances of O, Mg, Cr, Y, Zr, Ba, Nd, and Eu (along with previously published abundances for C and Si) are presented. This study is one of the first to specifically examine planetary host stars for the heavy elements produced by neutron capture reactions. We find that the abundances in host stars are chemically different from both the standard solar abundances and the abundances in non-host stars in all elements studied, with enrichments over non-host stars ranging from 0.06 dex (for O) to 0.11 dex (for Cr and Y). Such abundance trends are in agreement with other previous studies of field stars and lead us to conclude that the chemical anomalies observed in planetary host stars are the result of normal galactic chemical evolution processes. Based on this observation, we conclude that the observed chemical traits of planetary host stars are primordial in origin, coming from the original nebula and not from a "pollution" process occurring during or after formation, and that planet formation occurs naturally with the evolution of stellar material.
机译:作为英澳行星搜索的一部分,我们给出了118个恒星的元素丰度(其中28个是已知的太阳系外行星恒星)。介绍了O,Mg,Cr,Y,Zr,Ba,Nd和Eu的丰度(以及先前发布的C和Si丰度)。这项研究是第一个专门研究行星宿主恒星中子俘获反应产生的重元素的研究之一。我们发现,在所有研究的元素中,主恒星的丰度在化学上都不同于标准太阳丰度和非主恒星的丰度,非主恒星的富集范围从0.06 dex(对于O)到0.11 dex(对于Cr和Y)。这样的丰度趋势与以前对场星的其他研究相吻合,使我们得出结论,在行星宿主星中观察到的化学异常是正常银河化学演化过程的结果。根据这一观察,我们得出结论,所观测到的行星宿主恒星的化学特征是原始的,起源于原始星云,而不是形成过程中或形成之后发生的“污染”过程,并且行星的形成自然是随着恒星的演化而发生的。恒星材料。

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