Metal and dust evolution in ALMA REBELS galaxies: insights for future JWST observations

IF 4.7 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Marco Palla, Ilse De Looze, Monica Relaño, Stefan van der Giessen, Pratika Dayal, Andrea Ferrara, Raffaella Schneider, Luca Graziani, Hiddo S B Algera, Manuel Aravena, Rebecca A A Bowler, Alexander P S Hygate, Hanae Inami, Ivana van Leeuwen, Rychard Bouwens, Jacqueline Hodge, Renske Smit, Mauro Stefanon, Paul van der Werf
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Abstract

ALMA observations revealed the presence of significant amounts of dust in the first Gyr of Cosmic time. However, the metal and dust buildup picture remains very uncertain due to the lack of constraints on metallicity. JWST has started to reveal the metal content of high-redshift targets, which may lead to firmer constraints on high-redshift dusty galaxies evolution. In this work, we use detailed chemical and dust evolution models to explore the evolution of galaxies within the ALMA REBELS survey, testing different metallicity scenarios that could be inferred from JWST observations. In the models, we track the buildup of stellar mass by using non-parametric SFHs for REBELS galaxies. Different scenarios for metal and dust evolution are simulated by allowing different prescriptions for gas flows and dust processes. The model outputs are compared with measured dust scaling relations, by employing metallicity-dependent calibrations for the gas mass based on the [C ii] 158 μm line. Independently of the galaxies metal content, we found no need for extreme dust prescriptions to explain the dust masses revealed by ALMA. However, different levels of metal enrichment will lead to different dominant dust production mechanisms, with stardust production dominant over other ISM dust processes only in the metal-poor case. This points out how metallicity measurements from JWST will significantly improve our understanding of the dust buildup in high-redshift galaxies. We also show that models struggle to reproduce observables such as dust-to-gas and dust-to-stellar ratios simultaneously, possibly indicating an overestimation of the gas mass through current calibrations, especially at high metallicities.
ALMA REBELS星系中的金属和尘埃演化:对未来JWST观测的启示
ALMA观测显示,在宇宙时间的第一个Gyr存在大量尘埃。然而,由于缺乏对金属度的约束,金属和尘埃堆积的情况仍然非常不确定。JWST 已经开始揭示高红移目标的金属含量,这可能会对高红移尘埃星系的演化产生更坚实的约束。在这项工作中,我们使用详细的化学和尘埃演化模型来探索ALMA REBELS巡天中星系的演化,测试从JWST观测中推断出的不同金属性方案。在模型中,我们使用 REBELS 星系的非参数 SFHs 来跟踪恒星质量的积累。通过对气体流和尘埃过程的不同规定,模拟了金属和尘埃演化的不同情况。通过采用基于 [C ii] 158 μm 线的气体质量金属性校准,将模型输出结果与测得的尘埃比例关系进行比较。与星系的金属含量无关,我们发现不需要极端的尘埃参数来解释 ALMA 揭示的尘埃质量。不过,不同的金属富集程度会导致不同的主要尘埃生成机制,只有在金属贫乏的情况下,星尘生成才会优先于其他ISM尘埃过程。这就指出了 JWST 的金属性测量将如何极大地提高我们对高红移星系尘埃堆积的理解。我们还发现,模型很难同时再现尘气比和尘星比等观测数据,这可能表明目前的定标高估了气体质量,尤其是在高金属性的情况下。
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来源期刊
CiteScore
9.10
自引率
37.50%
发文量
3198
审稿时长
3 months
期刊介绍: Monthly Notices of the Royal Astronomical Society is one of the world''s leading primary research journals in astronomy and astrophysics, as well as one of the longest established. It publishes the results of original research in positional and dynamical astronomy, astrophysics, radio astronomy, cosmology, space research and the design of astronomical instruments.
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