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Li and Be Depletion in Stars with Exoplanets?

机译:李,并用外产的星星枯竭?

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It is well known that stars with orbiting giant planets have a higher metallic content than stars without detected planets. In addition, we have found that solar-type stars with planets present an extra Li depletion when compared with field stars. On the other hand, Be needs a greater temperature to be destroyed, so we may find such a relation in cooler stars, whose convective envelopes are deep enough to carry material to layers where Be can be burned. We present Li and Be abundances for an extensive sample of stars with and without detected planets, covering a wide range of effective temperatures (4700-6500 K) with the aim of studying possible differences between the abundances of both groups. The processes that take place in the formation of planetary systems may affect the mixing of material inside their host stars and hence the abundances of light elements.
机译:众所周知,具有轨道巨头行星的恒星具有比没有检测到的行星的恒星更高的金属含量。此外,我们发现,与行星的太阳能型星星在与场恒星相比时额外的李耗尽。另一方面,需要销毁更大的温度,因此我们可能会在凉爽的星星中找到这种关系,其对流包络足够深以为可以烧毁的层。我们展示了李,并且对具有和没有检测到的行星的广泛恒星样本是丰富的,涵盖了各种有效的温度(4700-6500 k),目的是研究两组的丰度之间的可能差异。在形成行星系统中形成的过程可能会影响其主恒星内部的材料的混合,从而影响光元素的丰度。

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