论文标题

Galah调查:对宇宙学锂和银河锂进化的新限制

The GALAH Survey: A new constraint on cosmological lithium and Galactic lithium evolution from warm dwarf stars

论文作者

Gao, Xudong, Lind, Karin, Amarsi, Anish M., Buder, Sven, Bland-Hawthorn, Joss, Campbell, Simon W., Asplund, Martin, Casey, Andrew R., De Silva, Gayandhi M., Freeman, Ken C., Hayden, Michael R., Lewis, Geraint F., Martell, Sarah L., Simpson, Jeffrey D., Sharma, Sanjib, Zucker, Daniel B., Zwitter, Tomaž, Horner, Jonathan, Munari, Ulisse, Nordlander, Thomas, Stello, Dennis, Ting, Yuan-Sen, Traven, Gregor, Wittenmyer, Robert A., collaboration, the GALAH

论文摘要

锂在宇宙中的耗竭和富集尚未得到很好的了解。为了帮助收紧对恒星和银河进化模型的限制,我们提出了迄今为止对li的最大高分辨率分析,迄今为止,超过100 000个galah田间星星的结果超过100 000,跨越有效温度的$ 5900 \,\ mathrm {k} \ MATHRM {k}金属性$ -3 \ lyssim \ rm [fe/h] \ lyssim +0.5 $。我们将这些恒星分为两组,在所谓的Li-Dip的温暖而凉爽的一侧,这是Kiel图的局部区域,其中锂被严重耗尽。我们发现,这两组中的恒星在A(Li) - [Fe/H]平面中显示出相似的趋势,但是在0.4 DEX的A(Li)中,恒定的偏移大致偏移,温暖的组具有较高的LI丰度。在$ \ rm [fe/h] \ gtrsim-0.5 $中,两组的金属性均显着增加,李的丰度显着增加,这表明了大银河生产的发作。在较低的金属性下,凉爽基团的恒星位于恶化高原上,相对于大爆炸核合成(BBN)预测的原始值,锂降低了约0.4 dex。但是,[Fe/H] = -1.0和-0.5之间的温暖组中的恒星形成了高架高原,这在很大程度上与BBN预测一致。这可能表明这些恒星实际上保留了早期宇宙中产生的原始LI。

Lithium depletion and enrichment in the cosmos is not yet well understood. To help tighten constraints on stellar and Galactic evolution models, we present the largest high-resolution analysis of Li abundances A(Li) to date, with results for over 100 000 GALAH field stars spanning effective temperatures $5900\,\mathrm{K} \lesssim \rm{T_{eff}} \lesssim7000\,\mathrm{K}$ and metallicities $-3 \lesssim \rm[Fe/H] \lesssim +0.5$. We separated these stars into two groups, on the warm and cool side of the so-called Li-dip, a localised region of the Kiel diagram wherein lithium is severely depleted. We discovered that stars in these two groups show similar trends in the A(Li)-[Fe/H] plane, but with a roughly constant offset in A(Li) of 0.4 dex, the warm group having higher Li abundances. At $\rm[Fe/H]\gtrsim-0.5$, a significant increasing in Li abundance with increasing metallicity is evident in both groups, signalling the onset of significant Galactic production. At lower metallicity, stars in the cool group sit on the Spite plateau, showing a reduced lithium of around 0.4 dex relative to the primordial value predicted from Big Bang nucleosynthesis (BBN). However, stars in the warm group between [Fe/H] = -1.0 and -0.5, form an elevated plateau that is largely consistent with the BBN prediction. This may indicate that these stars in fact preserve the primordial Li produced in the early Universe.

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