论文标题

部分可观测时空混沌系统的无模型预测

The Mass-Metallicity Relation of Dwarf Galaxies at Cosmic Noon from JWST Observations

论文作者

Li, Mingyu, Cai, Zheng, Bian, Fuyan, Lin, Xiaojing, Li, Zihao, Wu, Yunjing, Sun, Fengwu, Zhang, Shiwu, Golden-Marx, Emmet, Sun, Zechang, Zou, Siwei, Fan, Xiaohui, Egami, Eiichi, Charlot, Stephane, Bruzual, Gustavo, Chevallard, Jacopo

论文摘要

我们介绍了51个矮星星系的质量金属关系(MZR)($ M_ \ Star \大约10^{6.5} -10^{9.5} 〜m_ \ odot $),$ z = 2-3 $)来自Abell 2744和Smacs J0723-3723-372-372-372 calaxy calaxy callassy clustss calusters。这些矮星系是通过深jwst/niriss成像和无狭窄的grism谱观测来鉴定和确认的。通过利用JWST的出色性能和重力镜头效应,我们将先前的MZR关系延长到$ z = 2-3 $,至较低的质量制度下降到$ \ $ \ $ \ $ 2.5 $ 2.5的数量级,而先前的研究则相比。我们发现MZR在低质量端具有较浅的斜率($ M_ \ Star <10^{9} 〜M_ \ ODOT $),其坡度周转点为$ \ $ \ $ 10^9〜m_ \ odot $。这意味着矮星系中的主导反馈过程可能与大型星系中的反馈过程不同。从$ z = 3 $到$ z = 2 $,对于给定的恒星质量,矮星系的金属性增强了$ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ \ biftlax $ dex,这与质量较高的星系中的温和进化相一致。此外,我们证实了矮星系中的气相金属,恒星质量和恒星形成速率之间存在基本金属关系(FMR),$ z = 2-3 $。我们派生的FMR没有明显的红移演化,可以用作基准,以了解高$ z $宇宙中矮星系中SFR和金属性之间的抗相关性的起源。

We present a study of the mass-metallicity relation (MZR) of 51 dwarf galaxies ($M_\star\approx 10^{6.5} - 10^{9.5}~M_\odot$) at $z = 2-3$ from the Abell 2744 and SMACS J0723-3732 galaxy cluster fields. These dwarf galaxies are identified and confirmed by deep JWST/NIRISS imaging and slitless grism spectroscopic observations. By taking advantage of the superior performance of JWST and the gravitational lensing effect, we extend the previous MZR relation at $z=2-3$ to a much lower mass regime down by $\approx$ 2.5 orders of magnitude as compared with previous studies. We find that the MZR has a shallower slope at the low-mass end ($M_\star<10^{9}~M_\odot$), with a slope turnover point of $\approx$ $10^9~M_\odot$. This implies that the dominating feedback processes in dwarf galaxies may be different from that in massive galaxies. From $z=3$ to $z=2$, the metallicity of the dwarf galaxies is enhanced by $\approx0.09$ dex for a given stellar mass, consistent with the mild evolution found in galaxies with higher mass. Furthermore, we confirm the existence of a fundamental metallicity relation (FMR) between the gas-phase metallicity, stellar mass, and star formation rate in dwarf galaxies at $z=2-3$. Our derived FMR, which has no significant redshift evolution, can be used as a benchmark to understand the origin of the anti-correlation between the SFR and metallicity of dwarf galaxies in the high-$z$ Universe.

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