首页> 外文期刊>Astronomy and astrophysics >The GAPS programme with HARPS-N at TNG - X. Differential abundances in the XO-2 planet-hosting binary
【24h】

The GAPS programme with HARPS-N at TNG - X. Differential abundances in the XO-2 planet-hosting binary

机译:TNG上具有HARPS-N的GAPS程序-X. XO-2行星宿主双星中的微分丰度

获取原文
           

摘要

Binary stars hosting exoplanets are a unique laboratory where chemical tagging can be performed to measure the elemental abundances of both stellar components with high accuracy, with the aim to investigate the formation of planets and their subsequent evolution. Here, we present a high-precision differential abundance analysis of the XO-2 wide stellar binary based on high-resolution HARPS-N at TNG spectra. Both components are very similar K-dwarfs and host planets. Since they formed presumably within the same molecular cloud, we expect that they possess the same initial elemental abundances. We investigated whether planets can cause some chemical imprints in the stellar atmospheric abundances. We measure abundances of 25 elements for both stars with a range of condensation temperature TC = 40?1741 K, achieving typical precisions of ~0.07?dex. The northern component shows abundances in all elements higher by +0.067 ± 0.032 dex on average, with a mean difference of +0.078 dex for elements with TC > 800?K. The significance of the XO-2N abundance difference relative to XO-2S is at the 2σ level for almost all elements. We discuss that this result might be interpreted as the signature of the ingestion of material by XO-2N or depletion in XO-2S that is due to locking of heavy elements by the planetary companions. We estimate a mass of several tens of M⊕ in heavy elements. The difference in abundances between XO-2N and XO-2S shows a positive correlation with the condensation temperatures of the elements, with a slope of (4.7 ± 0.9) × 10-5 dex?K-1, which could mean that both components have not formed terrestrial planets, but first experienced the accretion of rocky core interior to the subsequent giant planets.
机译:系有系外行星的双星是一个独特的实验室,可以在其中进行化学标记,以高精度测量两个恒星成分的元素丰度,目的是研究行星的形成及其随后的演化。在这里,我们基于TNG光谱上的高分辨率HARPS-N提出了XO-2宽恒星二进制的高精度差分丰度分析。这两个组件都是非常相似的K矮星和宿主行星。由于它们大概是在同一分子云中形成的,因此我们希望它们具有相同的初始元素丰度。我们研究了行星是否会在恒星大气丰度中引起一些化学烙印。我们测量了两颗恒星的25个元素的丰度,其凝结温度TC = 40?1741 K,达到了约0.07?dex的典型精度。北部成分显示所有元素的平均丰度平均增加+0.067±0.032 dex,而TC> 800?K的元素的平均差为+0.078 dex。几乎所有元素的XO-2N丰度差异相对于XO-2S的显着性均为2σ。我们讨论这个结果可能被解释为XO-2N吸收物质或XO-2S耗尽的标志,这是由于行星伴星锁定了重元素所致。我们估计重元素的质量为几十M mass。 XO-2N和XO-2S之间的丰度差异与元素的冷凝温度呈正相关,其斜率为(4.7±0.9)×10-5 dex?K-1,这可能意味着这两个组件都具有不是形成地球的行星,而是首先经历了岩心内部对随后的巨型行星的吸积。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号