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首页> 外文期刊>The Astrophysical journal >Be ABUNDANCES IN COOL MAIN-SEQUENCE STARS WITH EXOPLANETS*
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Be ABUNDANCES IN COOL MAIN-SEQUENCE STARS WITH EXOPLANETS*

机译:带有EXOPLANETS的酷炫主序星中的丰富*

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We present new Ultraviolet and Visual Echelle Spectrograph (UVES) spectra of a sample of 15 cool unevolved stars with and without detected planetary companions. Together with previous determinations, we study Be depletion and possible differences in Be abundances between the two groups of stars. We obtain a final sample of 89 and 40 stars with and without planets, respectively, which covers a wide range of effective temperatures, from 4700?K to 6400?K, and includes several cool dwarf stars for the first time. We determine Be abundances for these stars and find that for most of them (the coolest ones) the Be II resonance lines are often undetectable, implying significant Be depletion. While for hot stars Be abundances are approximately constant, with a slight fall as T eff decreases and the Li-Be gap around 6300?K, we find a steep drop of Be content as T eff decreases for T eff 5500?K, confirming the results of previous papers. Therefore, for these stars there is an unknown mechanism destroying Be that is not reflected in current models of Be depletion. Moreover, this strong Be depletion in cool objects takes place for all the stars regardless of the presence of planets; thus, the effect of extra Li depletion in solar-type stars with planets when compared with stars without detected planets does not seem to be present for Be, although the number of stars at those temperatures is still small to reach a final conclusion.
机译:我们提出了15个冷未演化恒星样本的新的紫外和可见埃歇尔光谱(UVES)光谱,这些恒星有或没有检测到行星伴。连同先前的确定,我们研究两组恒星之间的Be耗竭和Be丰度的可能差异。我们分别获得了89个和40个有或没有行星的恒星的最终样本,它们涵盖了从4700?K到6400?K的广泛有效温度,并且首次包括了几颗冷矮星。我们确定这些恒星的丰度,发现对于大多数恒星(最冷的恒星)来说,Be II共振线通常是无法检测到的,这意味着大量的Be耗尽。对于热星,Be的丰度大致恒定,随着T eff的降低和Li-Be间隙在6300?K附近略有下降,但当T eff <5500?K时,随着T eff的降低,我们发现Be含量急剧下降,这证实了先前论文的结果。因此,对于这些恒星,存在一种未知的破坏Be的机制,这在当前的Be耗尽模型中并未得到反映。而且,不管有没有行星存在,所有恒星都会在冷天体中发生这种强烈的Be耗尽现象。因此,对于Be来说,与没有检测到行星的恒星相比,在具有太阳系恒星的恒星中似乎没有多余的锂耗尽的影响,尽管在这些温度下恒星的数量仍然很小,无法得出最终结论。

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