论文标题

寻找电源岛:由z = 8.7的光谱过​​度密度提供动力的潜在电离气泡

Searching for Islands of Reionization: A Potential Ionized Bubble Powered by a Spectroscopic Overdensity at z = 8.7

论文作者

Larson, Rebecca L., Finkelstein, Steven L., Hutchison, Taylor A., Papovich, Casey, Bagley, Micaela B., Dickinson, Mark E., Rojas-Ruiz, Sofía, Ferguson, Henry C., Jung, Intae, Giavalisco, Mauro, Grazian, A., Pentericci, Laura, Tacchella, Sandro

论文摘要

我们使用Mosfire近红外光谱仪上的光谱调查介绍了1000万凯克望远镜的近红外光谱仪,以在四个Candels Fields(Goods-N,Egs,Egs,UDS和Cosmos)中从Z〜9-10的候选星系中搜索Ly $α$的排放。我们观察了11个目标星系,在〜8.1个小时的集成中检测到一个对象,在z = 8.665 +/- 0.001时,具有集成的信号对noise> 7。该星系在烛台扩展的球状条带(EGS)领域,并在实际上与lie $ nly $ nly $ n ly $ n in ly $ cy n in n in n in n in n in n in ly $ rassy $ y。 Z = 8.683(Zitrin等人,2015年)。检测LY $α$表明在电离过程的早期存在大型(〜1 pmpc)电离气泡的存在。我们探索在此时期创建这种大小的气泡所需的电离输出,发现这种气泡所需的比完全预期的星系群提供的电离功率还要多(通过将UV光度函数集成到M_UV = -13)。如果我们的星系居住在过度密度的情况下,我们检测到的LY $α$将能够在该时代逃脱该时期的主要中性层间培养基,这与Finkelstein等人在该区域中先前在该区域鉴定的光度过度密度一致。 2021。这意味着烛台在Z = 8.7处托管过度密度,该菜单为一个(或更多)电离气泡提供动力,这一假设将在该领域的詹姆斯·韦伯(James Webb)空间望远镜观测值中即将进行测试。

We present the results from a spectroscopic survey using the MOSFIRE near-infrared spectrograph on the 10m Keck telescope to search for Ly$α$ emission from candidate galaxies at z ~9-10 in four of the CANDELS fields (GOODS-N, EGS, UDS, and COSMOS). We observed 11 target galaxies, detecting Ly$α$ from one object in ~8.1 hours of integration, at z = 8.665 +/- 0.001 with an integrated signal-to-noise > 7. This galaxy is in the CANDELS Extended Groth Strip (EGS) field, and lies physically close (3.5 physical Mpc [pMpc]) to another confirmed galaxy in this field with Ly$α$ detected at z=8.683 (Zitrin et al. 2015). The detection of Ly$α$ suggests the existence of large (~1 pMpc) ionized bubbles fairly early in the reionization process. We explore the ionizing output needed to create bubbles of this size at this epoch and find that such a bubble requires more than the ionizing power provided by the full expected population of galaxies (by integrating the UV Luminosity Function down to M_UV = -13). The Ly$α$ we detect would be able to escape the predominantly-neutral intergalactic medium at this epoch if our galaxy is inhabiting an overdensity, which would be consistent with the photometric overdensity previously identified in this region by Finkelstein et al. 2021. This implies that the CANDELS EGS field is hosting an overdensity at z = 8.7 which is powering one (or more) ionized bubbles, a hypothesis that will be imminently testable with forthcoming James Webb Space Telescope observations in this field.

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