论文标题

光谱镜确认的Lyman-Alpha发射器从红移5到7个,后面十个星系簇镜头后面

Spectroscopically Confirmed Lyman-Alpha Emitters from Redshift 5 to 7 Behind Ten Galaxy Cluster Lenses

论文作者

Fuller, Spencer, Lemaux, Brian, Bradač, Maruša, Hoag, Austin, Schmidt, Kasper, Huang, Kuang, Strait, Victoria, Mason, Charlotte, Treu, Tommaso, Pentericci, Laura, Trenti, Michele, Henry, Alaina, Malkan, Matt

论文摘要

我们提出了36个光谱镜证实的本质上确认的紫外线$α$从后续观测值中发出的星系,该观测值是重力镜头的高降射候选者的Keck/Deimos。使用\ textIt {hst}和\ textit {spitzer}成像调查,选择了从光度数据中选择$ 5 \ simsim z \ Lessim 7 $。我们使用光度红移信息执行集成的光度红移概率削减$> 1 \%$之间的$ 5 <z <7 $之间,以构建198个高红移对象的样本。我们的高红移样品跨越了固有的紫外线亮度,从几美元降至$ 0.001L^*$。我们确定了19 $ $α$的19个高信心检测,另外17个可能的检测。我们将样品分为低红移($ z \ sim5.5 $)和高红移($ z \ sim6.5 $)垃圾箱,并运行了Monte Carlo试验,并结合了LY $α$排放的强度以及非检测的光度红色速度。考虑到只能在我们调查的信托深度处检测到EW(ly $α$)$> $25Å$25Å$> $25Å$>25Å$> $25Å,并且只有那些具有ew(ly $α$> $25Å)为true laes的星系,最后只有$ m_ {ab {ab {ab {ab {ab {ab {ab {ab {ab {ab} <26.8 $,我们才发现lae lae lae laes laes laes,或0.26 $ \ pm0.04 $ to 0.30 $ \ pm0.04 $。这些相对于低降距样品的值与RedShift升至$ z \ sim6 $的LAE分数上升是一致的,但是在$ z \ sim6.5 $时,我们的结果与在内在更明亮的亮度的调查结果之间存在一些张力。我们得出结论,本质上淡淡的星系具有LY $α$排放,并且从$ z \ sim6.5 $的高红移样品中的LAE分数急剧下降,并以$ z \ sim7.5 $的价格从类似的星系下降。这可能表明我们目睹了电离时代的尾端,因为这些红移之间的内在星系特性的变化不会预期下降。

We present 36 spectroscopically confirmed intrinsically UV-faint Ly$α$ emitting galaxies from follow-up observations with Keck/DEIMOS of gravitationally lensed high-redshift candidates. Candidates were selected to be between $5\lesssim z \lesssim 7$ from photometric data using \textit{HST} and \textit{Spitzer} imaging surveys. We used photometric redshift information to perform an integrated photometric redshift probability cut $>1\%$ between $5<z<7$ to construct a sample of 198 high-redshift objects. Our high-redshift sample spans intrinsic UV luminosities from a few $L^*$ down to $0.001L^*$. We identified 19 high-confidence detections of Ly$α$ and an additional 17 likely detections. We divided our sample into lower-redshift ($z\sim5.5$) and higher-redshift ($z\sim6.5$) bins and ran Monte Carlo trials, incorporating the strength of the Ly$α$ emission and the photometric redshift of the non-detections. Considering only objects where Ly$α$ could be detected at EW(Ly$α$)$>$25Å at $3σ$ at the fiducial depth of our survey, and only those galaxies with EW(Ly$α$)$>$25Å as true LAEs, and finally, only objects with $m_{AB}<26.8$, we found the LAE fraction to be flat, or modestly increase from 0.26$\pm0.04$ to 0.30$\pm0.04$. These values relative to those for lower-redshift samples are consistent with a rising LAE fraction with redshift out to $z\sim6$, but at $z\sim6.5$ there is some tension between our results and results from surveys at intrinsically brighter luminosities. We conclude intrinsically fainter galaxies have Ly$α$ emission, and there is a steep drop in the LAE fraction from our high-redshift sample at $z\sim6.5$ and from similar galaxies at $z\sim7.5$. This likely indicates we are witnessing the tail end of the epoch of reionization, as such a drop is not expected due to changes of intrinsic galaxy properties between these redshifts.

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