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Synthetic nebular emission lines of simulated galaxies over cosmic time

机译:宇宙时间的模拟星系的合成骨发射线

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This article presents an up-dated analysis of synthetic optical and UV emission lines of simulated galaxies over cosmic time. The strong emission lines are derived from self-consistently coupling novel spectral models accounting for nebular emission from young stars, AGN and Post-AGB stars to cosmological zoom-in as well as large-scale simulations. Investigating the evolution of optical line-ratios in the BPT diagrams, the simulations can successfully reproduce the observed trend of [OIII]/Hβ ratio increasing from low to high redshifts, due to evolving star formation rate and gas metallicity. Standard selection criteria in the BPT diagrams can appropriately distinguish the main ionising source(s) of galaxies at low redshifts, but they are less reliable for metal-poor galaxies, dominating the early Universe. To robustly classify the ionising radiation of such metal-poor galaxies, diagnostic diagrams based on luminosity ratios of UV lines are discussed. The novel interface between simulations and observations is potentially important for the interpretation of high-quality spectra of very distant galaxies to be gathered by next-generation telescopes, such as the James Webb Space Telescope.
机译:本文在宇宙时间上提出了对模拟星系的合成光学和紫外线排放线的预期分析。强辐射线源自自始终耦合新颖的谱模型,核算来自年轻恒星,AGN和AGB后恒星的骨肉发射到宇宙学放大以及大规模模拟。研究了BPT图中光学线路比的演变,由于不断变化的星形成速率和气体金属性,模拟可以成功地再现从低到高射频增加到高射频的[OIII] /Hβ比率的观察到趋势。 BPT图中的标准选择标准可以适当地区分星系的主要电离源在低红移,但对于金属贫乏星系,它们不太可靠,以占据早期宇宙。讨论了这种金属差的星系的电离辐射,讨论了基于紫外线的发光度比的诊断图。模拟和观测之间的新颖界面对于解释由下一代望远镜收集的非常遥远的星系的高质量光谱,例如詹姆斯韦布斯空间望远镜。

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