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Newly synthesized lithium in the interstellar medium

机译:星际介质中的新合成锂

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Astronomical observations of elemental and isotopic abundances provide the means to determine the source of elements and to reveal their evolutionary pathways since the formation of the Galaxy some 15 billion years ago. The abundance of lithium is particularly interesting because, although some of it is thought to be primordial, most results from spallation reactions (in which Galactic cosmic rays break apart larger nuclei in the interstellar medium). Spallation reactions are crucial for the production of other light elements, such as beryllium and boron, so observations of lithium isotopic abundances can be used to test model predictions for light-element synthesis in general. Here we report observations of ~7Li and ~6Li abundances in several interstellar clouds lying in the direction of the star o Persei. We find the abundance ratio ~7Li/~6Li to be about 2, which is significantly lower than the average Solar System value of 12.3 (refs 6, 7). An abundance ratio of 2 is clear evidence that the observed lithium must have resulted entirely from spallation, confirming a basic tenet of light-element synthesis. The total lithium abundance, however, is not enhanced as expected.
机译:自150亿年前银河系形成以来,元素和同位素丰度的天文学观测提供了确定元素来源并揭示其演化途径的手段。锂的丰度特别令人感兴趣,因为尽管其中一些锂被认为是原始的,但大多数是由散裂反应(其中银河系宇宙射线将星际介质中的较大核分裂开)产生的。散裂反应对于产生其他轻元素(例如铍和硼)至关重要,因此通常可以使用锂同位素丰度的观测值来测试模型预测,以进行轻元素合成。在这里,我们报告了在波斯星Persei方向上的几个星际云中〜7Li和〜6Li丰度的观测结果。我们发现丰度比〜7Li /〜6Li约为2,大大低于平均太阳系值12.3(参考文献6、7)。丰度比2清楚地表明,观察到的锂一定是完全由剥落产生的,这证实了轻元素合成的基本原理。但是,总锂丰度并未如预期的那样提高。

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