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首页> 外文期刊>Monthly Notices of the Royal Astronomical Society >Synthetic nebular emission from massive galaxies – II. Ultraviolet-line diagnostics of dominant ionizing sources
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Synthetic nebular emission from massive galaxies – II. Ultraviolet-line diagnostics of dominant ionizing sources

机译:大质量星系的合成星云发射-II。

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摘要

We compute synthetic optical and ultraviolet (UV) emission-line properties of galaxies in a full cosmological framework by coupling, in post-processing, new-generation nebular-emission models with high-resolution, cosmological zoom-in simulations of massive galaxies. Our self-consistent modelling accounts for nebular emission from young stars and accreting black holes (BHs). We investigate which optical-and UV-line diagnostic diagrams can best help to discern between the main ionizing sources, as traced by the ratio of BH accretion to star formation rates in model galaxies, over a wide range of redshifts. At low redshift, simulated star-forming galaxies, galaxies dominated by active galactic nuclei and composite galaxies are appropriately differentiated by standard selection criteria in the classical [O III]lambda 5007/H beta versus [N II]lambda 6584/H alpha diagram. At redshifts z greater than or similar to 1, however, this optical diagram fails to discriminate between active and inactive galaxies at metallicities below 0.5Z(circle dot). To robustly classify the ionizing radiation of such metal-poor galaxies, which dominate in the early Universe, we confirm 3 previous and propose 11 novel diagnostic diagrams based on equivalent widths and luminosity ratios of UV emission lines, such as EW(O III]lambda 1663) versus O III]lambda 1663/He II lambda 1640, C III]lambda 1908/He II lambda 1640 versus O III]lambda 1663/He II lambda 1640, and C IV lambda 1550/C III]lambda 1908 versus C III]lambda 1908/C II]lambda 2326. We formulate associated UV selection criteria and discuss some caveats of our results (e.g. uncertainties in the modelling of the He II lambda 1640 line). These UV diagnostic diagrams are 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:通过在后处理,新一代星云发射模型与高分辨率,大规模宇宙星系的放大模拟中耦合,我们可以在完整的宇宙学框架内计算星系的合成光学和紫外线(UV)发射线特性。我们的自洽模型解释了年轻恒星和增生黑洞(BH)的星云发射。我们研究了在广泛的红移范围内,哪种光学和紫外线诊断图可以最有效地分辨主要电离源,如模型星系中BH​​积聚与恒星形成率的比率所追踪的那样。在低红移下,模拟的恒星形成星系,活动星系核和复合星系占主导的星系通过标准[O III] lambda 5007 / H beta与[N II] lambda 6584 / H alpha图的标准选择标准进行了适当区分。但是,在红移z大于或等于1时,此光学图无法区分金属性低于0.5Z(圆点)的活动星系和非活动星系。为了对这类在早期宇宙中占主导地位的贫金属星系的电离辐射进行可靠的分类,我们确认了3个以前的星系,并根据UV发射线的等效宽度和光度比(例如EW(O III)lambda)提出了11种新颖的诊断图1663)与O III] lambda 1663 / He IIλ1640,C III] lambda 1908 / He IIλ1640与O III] lambda 1663 / He IIλ1640和C IV lambda 1550 / C III] lambda 1908与C III ] lambda 1908 / C II] lambda2326。我们制定了相关的紫外线选择标准,并讨论了一些研究结果的注意事项(例如He II lambda 1640谱线建模中的不确定性)。这些紫外线诊断图对于解释由下一代望远镜(如詹姆斯·韦伯太空望远镜)收集的非常遥远星系的高质量光谱可能具有重要意义。

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    UPMC Sorbonne Univ CNRS UMR7095 Inst Astrophys Paris F-75014 Paris France|Univ Vienna Inst Astron Turkenschanzstr 17 A-1180 Vienna Austria|Univ Copenhagen Niels Bohr Inst DARK Lyngbyvej 2 DK-2100 Copenhagen Denmark;

    UPMC Sorbonne Univ CNRS UMR7095 Inst Astrophys Paris F-75014 Paris France;

    UPMC Sorbonne Univ CNRS UMR7095 Inst Astrophys Paris F-75014 Paris France|Univ Lyon1 Univ Lyon ENS Lyon CNRS Ctr Rech Astrophys Lyon UMR5574 F-69230 St Genis Laval France|SISSA Via Bonomea 265 I-34136 Trieste Italy;

    Max Planck Inst Astrophys Karl Schwarzschild Str 1 D-85741 Garching Germany;

    Rutgers State Univ Dept Phys & Astron Piscataway NJ 08854 USA|Flatiron Inst Ctr Computat Astrophys 162 5th Ave New York NY 10010 USA;

    Columbia Univ Dept Astron New York NY 10027 USA;

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  • 正文语种 eng
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  • 关键词

    methods: numerical; galaxies: abundances; galaxies: evolution; galaxies: formation; galaxies: general;

    机译:方法:数值;星系:丰富;星系:进化;星系:形成;星系:一般;

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