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Stellar astrophysics in the near UV with VLT-CUBES

机译:近紫外线与vlt-cubes的恒星天体物理学

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Alongside future observations with the new European Extremely Large Telescope (ELT), optimised instruments on the 8-10m generation of telescopes will still be competitive at 'ground UV' wavelengths (3000-4000 A). The near UV provides a wealth of unique information on the nucleosynthesis of iron-peak elements, molecules, and neutron-capture elements. In the context of development of the near-UV CUBES spectrograph for ESO's Very Large Telescope (VLT), we are investigating the impact of spectral resolution on the ability to estimate chemical abundances for beryllium and more than 30 iron-peak and heavy elements. From work ahead of the Phase A conceptual design of CUBES, here we present a comparison of the elements observable at the notional resolving power of CUBES (R~ 20,000) to those with VLT-UVES (R~ 40,000). For most of the considered lines signal-to-noise is a more critical factor than resolution. We summarise the elements accessible with CUBES, several of which (e.g. Be, Ge, Hf) arc now the focus of quantitative simulations as part of the ongoing Phase A study.
机译:除了新欧洲极大的望远镜(ELT)的未来观察外,8-10米生成的望远镜上的优化仪器仍然竞争'接地UV'波长(3000-4000 A)。近紫外线提供了有关铁峰元素,分子和中子捕获元件的核酸合成的大量信息。在开发ESO非常大望远镜(VLT)的近紫外线立方体光谱仪的背景下,我们正在研究光谱分辨率对培养铍和超过30个铁峰和重元素的化学丰富的能力的影响。从阶段前面的工作概念设计立方体的概念设计,我们在这里向VLT-UVES(R〜40,000)的概念分辨率(R〜20,000)的概念分辨能力进行了比较。对于大多数考虑的线路信号对噪声是比分辨率更关键的因素。我们总结了多维数据集可访问的元素,其中几个(例如,GE,GE,HF)现在是定量模拟的重点作为研究的一部分。

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