论文标题

GAIA-ESO调查:探测太阳附近旧金属富裕矮人恒星中的锂丰度

The Gaia-ESO Survey: Probing the lithium abundances in old metal-rich dwarf stars in the Solar vicinity

论文作者

Dantas, M. L. L., Guiglion, G., Smiljanic, R., Romano, D., Magrini, L., Bensby, T., Chiappini, C., Franciosini, E., Nepal, S., Tautvaišienė, G., Gilmore, G., Randich, S., Lanzafame, A. C., Heiter, U., Morbidelli, L., Prisinzano, L., Zaggia, S.

论文摘要

我们测试了一种场景,其中径向迁移可能会影响太阳邻居中矮星的LI丰度模式。这可能证实,这些恒星中的LI丰度无法作为星际介质中LI丰度的探针。我们使用GAIA-ESO调查的第6个内部数据发布中的高质量数据(包括LI丰度)。在此样本中,我们通过分层聚类以化学丰度相似的方式将恒星分组。我们的分析对待测量的li丰度和上限。先前鉴定的径向迁移的恒星的LI包膜远低于基准气象值(<3.26 dex);最高检测到的恒星的恒星具有(li)= 2.76 dex。这证实了旧矮星($ \ sim $ 8 Gyr)观察到的先前趋势,其中li降低了[fe/h] $ \ gtrsim $ 0。这一结果是支持证据,表明在旧矮星的上层中测量的LI的丰度不应被视为li星际培养基的代理。我们的方案还表明,正如文献中最近提出的那样,不应减少[m/h]> 0的恒星产量。我们的研究支持了最近的研究,该研究声称,浸入热的一侧的旧矮人是有效的LI丰度的探针,前提是原子扩散并不能显着降低金属富含金属物体大气中的初始LI丰度。

We test a scenario in which radial migration could affect the Li abundance pattern of dwarf stars in the solar neighbourhood. This may confirm that the Li abundance in these stars can not serve as a probe for the Li abundance in the interstellar medium. We use the high-quality data (including Li abundances) from the 6th internal Data Release of the Gaia-ESO survey. In this sample, we group stars by similarity in chemical abundances via hierarchical clustering. Our analysis treats both measured Li abundances and upper limits. The Li envelope of the previously identified radially migrated stars is well below the benchmark meteoritic value (<3.26 dex); the star with the highest detected abundance has A(Li) = 2.76 dex. This confirms the previous trends observed for old dwarf stars (median ages $\sim$ 8 Gyr), where Li decreases for [Fe/H]$\gtrsim$0. This result acts as supporting evidence that the abundance of Li measured in the upper envelope of old dwarf stars should not be considered a proxy for the interstellar medium Li. Our scenario also indicates that the stellar yields for [M/H]>0 should not be decreased, as recently proposed in the literature. Our study backs the recent studies that claimed that old dwarfs on the hot side of the dip are efficient probes of the ISM abundance of Li, provided atomic diffusion does not lower significantly the initial Li abundance in the atmospheres of metal-rich objects.

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