论文标题

从红移$ z \大约8 $到本地宇宙的质量金属关系的演变

Evolution of the Mass-Metallicity Relation from Redshift $z\approx8$ to the Local Universe

论文作者

Langeroodi, Danial, Hjorth, Jens, Chen, Wenlei, Kelly, Patrick L., Williams, Hayley, Lin, Yu-Heng, Scarlata, Claudia, Zitrin, Adi, Broadhurst, Tom, Diego, Jose M., Huang, Xiaosheng, Filippenko, Alexei V., Foley, Ryan J., Jha, Saurabh, Koekemoer, Anton M., Oguri, Masamune, Perez-Fournon, Ismael, Pierel, Justin, Poidevin, Frederick, Strolger, Lou

论文摘要

恒星质量与星系的气相金属性之间存在紧密的正相关,在低红移处已观察到。这种相关性的红移演化可以强烈限制星系演变的理论。 JWST的出现允许探测红移的质量金属关系,远远超出了以前的访问。在这里,我们报告了JWST NIRCAM成像中的RedShifts 8.15和8.16的两个发射线星系的发现,而NIRSPEC光谱是由集群RXJ2129.4 $+$+$ 0005的重力镜头的重力镜头。我们以$ 7.2 <z _ {\ rm spec} <9.5 $为$ 7.2 <z _ {\ rm spec} <9.5 $的九个额外星系测量他们的金属性和恒星质量,以报告质量金属关系的第一个定量统计推断为$ z \ oft8 $。我们测量$ \ sim 0.9 $ dex的演变,从质量金属关系的归一化中,从$ z \约8 $到本地宇宙;在固定的恒星质量上,与今天相比,星系的金属富集的8倍少8倍。我们推断的归一化与火灾模拟的预测一致。我们推断出的质量金属关系的斜率与火灾预测或在较低的红移所预测的斜率相似或略微浅。我们将$ z \约8美元的星系与本地宇宙中极低的金属模拟候选者进行了比较,发现它们通常与极端的发射线星系或“绿豌豆”不同,但在强发射线比和金属质量与“蓝莓星系”中相似。尽管相似,但在固定恒星质量下,与蓝莓星系相比,$ Z \ 8 $的星系在系统上的金属率降低。

A tight positive correlation between the stellar mass and the gas-phase metallicity of galaxies has been observed at low redshifts. The redshift evolution of this correlation can strongly constrain theories of galaxy evolution. The advent of JWST allows probing the mass-metallicity relation at redshifts far beyond what was previously accessible. Here we report the discovery of two emission-line galaxies at redshifts 8.15 and 8.16 in JWST NIRCam imaging and NIRSpec spectroscopy of targets gravitationally lensed by the cluster RXJ2129.4$+$0005. We measure their metallicities and stellar masses along with nine additional galaxies at $7.2 < z_{\rm spec} < 9.5$ to report the first quantitative statistical inference of the mass-metallicity relation at $z\approx8$. We measure $\sim 0.9$ dex evolution in the normalization of the mass-metallicity relation from $z \approx 8$ to the local Universe; at fixed stellar mass, galaxies are 8 times less metal enriched at $z \approx 8$ compared to the present day. Our inferred normalization is in agreement with the predictions of the FIRE simulations. Our inferred slope of the mass-metallicity relation is similar to or slightly shallower than that predicted by FIRE or observed at lower redshifts. We compare the $z \approx 8$ galaxies to extremely low metallicity analog candidates in the local Universe, finding that they are generally distinct from extreme emission-line galaxies or "green peas" but are similar in strong emission-line ratios and metallicities to "blueberry galaxies". Despite this similarity, at fixed stellar mass, the $z \approx 8$ galaxies have systematically lower metallicities compared to blueberry galaxies.

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