论文标题

部分可观测时空混沌系统的无模型预测

A strong He II $λ$1640 emitter with extremely blue UV spectral slope at $z=8.16$: presence of Pop III stars?

论文作者

Wang, Xin, Cheng, Cheng, Ge, Junqiang, Meng, Xiao-Lei, Daddi, Emanuele, Yan, Haojing, Ji, Zhiyuan, Jin, Yifei, Jones, Tucker, Malkan, Matthew A., Haro, Pablo Arrabal, Brammer, Gabriel, Oguri, Masamune, Hou, Meicun, Zhang, Shiwu

论文摘要

宇宙氢的电源和第一金属的宇宙产生是在大爆炸后的头十亿年发生的宇宙的主要相转换,但是这些宇宙仍然在观察上尚未被倍增。使用JWST NIRSPEC PRISM光谱,我们报告了$ z _ {\ Z _ {\ rm spec} = 8.1623 \ pm0.0007 $的sub- $ l_ \ ast $ galaxy的发现,通过检测一系列强大的ly ly ly ly and neb and neb and neb/neb neb/neb/neb neb/neb neb/neb brekist and dubbed rxj2129-z8heii。 RXJ2129-Z8HEII显示了一个明显的紫外线连续体,其陡峭(蓝色)的光谱斜率为$β= -2.53 _ { - 0.07}^{+0.06} $,在所有光谱中最陡峭的星系中最陡峭的星系中最陡峭的星系,$ z _ {可能导致其电离通量显着泄漏的频谱。因此,RXJ2129-Z8HEII是推动宇宙电离的关键星系人群的代表。更重要的是,我们在其频谱中检测到了强大的$λ$ 1640发射线,这是该线最高的红移之一。它的较高的休息框当量宽度($ {\ rm ew} = 21 \ pm4 $ angstrom)和相对于紫外线金属和Balmer线的极端通量比增加了RXJ2129-Z8HEII的一部分可能是流行的III。通过仔细的光电离模型,我们表明,具有强质量损失的POP III恒星电离光谱的物理校准现象学模型可以成功地重现RXJ2129-Z8HEII中观察到的发射线通量比。假设Eddington限制限制,该系统中的POP III星的总质量估计为$ 7.8 \ pm1.4 \ times10^5 m_ \ odot $。迄今为止,这个星系是早期宇宙中最引人注目的案例,在该宇宙中,痕量流行III恒星可能与金属增强的种群共存。

Cosmic hydrogen reionization and cosmic production of first metals are major phase transitions of the universe occurring during the first billion years after the Big Bang, however these are still underexplored observationally. Using the JWST NIRSpec prism spectroscopy, we report the discovery of a sub-$L_\ast$ galaxy at $z_{\rm spec}=8.1623\pm0.0007$, dubbed RXJ2129-z8HeII, via the detection of a series of strong rest-frame UV/optical nebular emission lines and the clear Lyman break. RXJ2129-z8HeII shows a pronounced UV continuum with an extremely steep (i.e. blue) spectral slope of $β=-2.53_{-0.07}^{+0.06}$, the steepest amongst all spectroscopically confirmed galaxies at $z_{\rm spec}\gtrsim7$, in support of its very hard ionizing spectrum that could lead to a significant leakage of its ionizing flux. Therefore, RXJ2129-z8HeII is representative of the key galaxy population driving the cosmic reionization. More importantly, we detect a strong He II $λ$1640 emission line in its spectrum, one of the highest redshifts at which such a line is robustly detected. Its high rest-frame equivalent width (${\rm EW}=21\pm4$ Angstrom) and extreme flux ratios with respect to UV metal and Balmer lines raise the possibility that part of RXJ2129-z8HeII's stellar populations could be Pop III-like. Through careful photoionization modeling, we show that the physically calibrated phenomenological models of the ionizing spectra of Pop III stars with strong mass loss can successfully reproduce the emission line flux ratios observed in RXJ2129-z8HeII. Assuming the Eddington limit, the total mass of the Pop III stars within this system is estimated to be $7.8\pm1.4\times10^5 M_\odot$. To date, this galaxy presents the most compelling case in the early universe where trace Pop III stars might coexist with metal-enriched populations.

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