论文标题

EGS中的新$ z> 7 $ lyman-alpha发射器:$ z \ sim 7.7 $的扩展电离结构的证据

New $z > 7$ Lyman-alpha Emitters in EGS: Evidence of an Extended Ionized Structure at $z \sim 7.7$

论文作者

Jung, Intae, Finkelstein, Steven L., Larson, Rebecca L., Hutchison, Taylor A., Straughn, Amber N., Bagley, Micaela B., Castellano, Marco, Cleri, Nikko J., Cooper, M. C., Dickinson, Mark, Ferguson, Henry C., Holwerda, Benne W., Kartaltepe, Jeyhan S., Kim, Seonwoo, Koekemoer, Anton M., Papovich, Casey, Park, Hyunbae, Pentericci, Laura, Perez-Gonzalez, Pablo G., Song, Mimi, Tacchella, Sandro, Weiner, Benjamin J., Willmer, Christopher N. A., Zavala, Jorge A.

论文摘要

我们使用KECK/MOSFIRE光谱仪进行地面的近红外光谱调查,以$ 7.0 <z <z <8.2 $的靶向$α$排放,从61个星系中靶向,以追踪播层间培养基的电离状态(IgM)。我们涵盖了$ \ sim10^\ prime \ prime \ prime \ prime \ prime \ prime $ prime $的总有效天空面积,宇宙组件的扩展粒状带状场近红外深层深度静脉外传统调查。从我们的观察结果中,我们以$> $> $ 4 $σ$的级别检测到八$ z> 7 $的星系,其中包括已知的$ z \ sim7.7 $ ly $ ly $α$ -emitter(lae)集群的其他成员(Tilvi等,2020)。随着这些新发现的$ z \ sim7.7 $ laes的添加,这是目前最大的LAE群集,$ z> 7 $。在该领域,以$ z \ sim7.7 $为单位的$α$检测率异常高,这表明从聚类的LAE中比其余的目标要明显更强大的$α$。我们估计这些LAE周围的电离气泡尺寸,并得出结论,LAE被聚集在通过重叠的电离气泡产生的扩展离子化结构中,从而使Ly $α$更容易从星系中逃脱。值得注意的是,群集中最亮的物体具有最低的$α$线的红移,并将其放置在其他LAE的前面。这表明我们目睹了从电离区域后侧的星系中Ly $α$的IgM传播增强。这可能是由于$α$辐射转移的结果:ly $α$接近中央速度的ly $α$被IGM散布了,而后侧星系中的ly $α$显着红移到具有清晰路径的地方。

We perform a ground-based near-infrared spectroscopic survey using the Keck/MOSFIRE spectrograph to target Ly$α$ emission at $7.0<z<8.2$ from 61 galaxies to trace the ionization state of the intergalactic medium (IGM). We cover a total effective sky area of $\sim10^\prime\times10^\prime$ in the Extended Groth Strip field of the Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey. From our observations, we detect Ly$α$ emission at a $>$4$σ$ level in eight $z>7$ galaxies, which include additional members of the known $z\sim7.7$ Ly$α$-emitter (LAE) cluster (Tilvi et al. 2020). With the addition of these newly-discovered $z\sim7.7$ LAEs, this is currently the largest measured LAE cluster at $z>7$. The unusually-high Ly$α$ detection rate at $z\sim7.7$ in this field suggests significantly stronger Ly$α$ emission from the clustered LAEs than from the rest of our targets. We estimate the ionized bubble sizes around these LAEs and conclude that the LAEs are clustered within an extended ionized structure created by overlapping ionized bubbles which allow the easier escape of Ly$α$ from galaxies. It is remarkable that the brightest object in the cluster has the lowest measured redshift of the Ly$α$ line, being placed in front of the other LAEs in the line-of-sight direction. This suggests that we are witnessing the enhanced IGM transmission of Ly$α$ from galaxies on the rear side of an ionized area. This could be a consequence of Ly$α$ radiative transfer: Ly$α$ close to the central velocity is substantially scattered by the IGM while Ly$α$ from the rear-side galaxies is significantly redshifted to where it has a clear path.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源