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Lithium in a metal-poor external galaxy:ω Centauri

机译:金属差的外围银河系中的锂:Ωendauri

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ω Centauri is a massive stellar system which is currently going through the Galactic Halo. Its compact aspect and spheroidal shape have for a long time led to it being classified as a Globular Cluster. However the fact that its stars cover a wide metallicity range (-0.6 <[Fe/H]< —2.1 ), points to this object as an external galaxy, satellite of the Milky Way. Lithium among warm metal-poor stars shows a roughly constant abundance, the "Spite Plateau". This has been interpreted as evidence for a primordial origin of the lithium nucleus, at the time of nucleosynthesis. After the physical conditions under which nucleosynthesis occurred, have been constrained by the observations of the fluctuations of the Cosmic Microwave Background, we are facing a "cosmological lithium problem", namely the primordial lithium was a factor of three to four higher than what observed in the Spite plateau. Several avenues may be taken to solve this conundrum, either relying on fundamental physics or on stellar physics, however the realm of possibilities may be considerably narrowed by observing stellar populations in different galaxies, which have experienced different evolutionary histories. Some of the proposed "solutions" may be clearly ruled out, depending on the observation of lithium in the metal-poor populations of external galaxies. w Centauri is the only external galaxy amenable to such an investigation in the era of 8m telescopes. We have pushed to its limits FLAMES at the ESO 8.2m telescope to obtain high resolution spectra of the Li i doublet in 91 Turn-Off and Sub-Giant stars at 18 in w Centauri. We present our preliminary results on this data which suggest that the Li content in w Centauri warm stars is comparable to that observed in Galactic Halo field stars of similar metallicities and temperatures. This may effectively rule out a whole class of models which invoke a severe Li depletion through processing of material in an early generation of massive stars.
机译:ωcentauri是一个大规模的恒星系统,目前正在通过银河光环。其紧凑的方面和球状形状具有很长一段时间的导致它被归类为球状簇。然而,其恒星覆盖宽的金属性范围(-0.6 <[Fe / h] <-2.1),指向这个物体作为外部银河系,银河系的卫星。温暖金属贫瘠的恒星中的锂呈现出大致恒定的丰富,“Hapite Plateau”。这被解释为核酸核苷时是锂核的原始来源的证据。在发生核酸合作的物理条件之后,受到宇宙微波背景的波动的观察,我们面临着“宇宙学锂问题”,即原始锂比观察到的倍数为三到四倍Havite高原。可以采取若干途径来解决这一难题,无论是依靠基本物理学还是恒星物理,都是通过观察不同星系的恒星种群,可能会大大缩小,这些术语经历了不同的进化历史。根据外部星系的金属贫乏群体的观察,可以清楚地排除一些提出的“解决方案”。 Wentauri是唯一可以在8M望远镜时代进行这种调查的外部银河。我们已经在ESO 8.2m望远镜上推动了它的限制火焰,以获得高分辨率的李I双峰和亚巨星的高分辨率频谱,在18岁的Wentauri。我们展示了我们对该数据的初步结果,表明W Centauri温暖恒星中的Li内容与在类似金属和温度的半乳清野星恒星中观察到。这可以有效排除一整套模型,通过在早期的大规模恒星中加工材料来调用严重的锂耗尽。

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