...
首页> 外文期刊>The Astrophysical journal >EXPLORING THE ORIGIN OF LITHIUM, CARBON, STRONTIUM, AND BARIUM WITH FOUR NEW ULTRA METAL-POOR STARS*
【24h】

EXPLORING THE ORIGIN OF LITHIUM, CARBON, STRONTIUM, AND BARIUM WITH FOUR NEW ULTRA METAL-POOR STARS*

机译:与四颗新的超贫金属星一起探索锂,碳,锶和钡的来源*

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We present an elemental abundance analysis for four newly discovered ultra metal-poor stars from the Hamburg/ESO survey, with [Fe/H] ≤ –4. Based on high-resolution, high signal-to-noise spectra, we derive abundances for 17 elements in the range from Li to Ba. Three of the four stars exhibit moderate to large overabundances of carbon, but have no enhancements in their neutron-capture elements. The most metal-poor star in the sample, HE 0233–0343 ([Fe/H] = –4.68), is a subgiant with a carbon enhancement of [C/Fe] = +3.5, slightly above the carbon-enhancement plateau suggested by Spite et al. No carbon is detected in the spectrum of the fourth star, but the quality of its spectrum only allows for the determination of an upper limit on the carbon abundance ratio of [C/Fe] +1.7. We detect lithium in the spectra of two of the carbon-enhanced stars, including HE 0233–0343. Both stars with Li detections are Li-depleted, with respect to the Li plateau for metal-poor dwarfs found by Spite & Spite. This suggests that whatever site(s) produced C either do not completely destroy lithium, or that Li has been astrated by early-generation stars and mixed with primordial Li in the gas that formed the stars observed at present. The derived abundances for the α elements and iron-peak elements of the four stars are similar to those found in previous large samples of extremely and ultra metal-poor stars. Finally, a large spread is found in the abundances of Sr and Ba for these stars, possibly influenced by enrichment from fast rotating stars in the early universe.
机译:我们对汉堡/ ESO调查中[Fe / H]≤–4的四颗新发现的超贫金属恒星进行元素丰度分析。基于高分辨率,高信噪比的光谱,我们得出了从Li到Ba的17种元素的丰度。四颗星中的三颗显示出中度到大型的碳过量,但中子俘获元素没有增强。样品中金属含量最低的恒星,HE 0233–0343([Fe / H] = –4.68),是一种碳含量为[C / Fe] = +3.5的亚细亚种,略高于建议的碳增强平台由Spite等人撰写。在第四颗恒星的光谱中未检测到碳,但其光谱的质量仅允许确定[C / Fe] <+1.7的碳丰度比的上限。我们在包括HE 0233–0343在内的两个碳增强恒星的光谱中检测到锂。相对于Spite&Spite发现的贫金属矮星的Li高原,这两个带有Li探测的恒星都被Li耗尽了。这表明无论产生C的任何位点都不能完全破坏锂,或者说Li已被早期恒星所致,并与形成当前恒星的气体中的原始Li混合。四颗恒星的α元素和铁峰元素的丰度与以前的大量极贫金属和超贫金属恒星的样本中发现的丰度相似。最后,这些恒星在Sr和Ba的丰度中发现了很大的扩散,这可能是受早期宇宙中快速旋转的恒星的富集影响的。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号