论文标题

缺少早期星系的[CII]排放

Missing [CII] emission from early galaxies

论文作者

Carniani, S., Ferrara, A., Maiolino, R., Castellano, M., Gallerani, S., Fontana, A., Kohandel, M., Lupi, A., Pallottini, A., Pentericci, L., Vallini, L., Vanzella, E.

论文摘要

ALMA的观察结果表明,高Z星系中的[CII] 158 $μm线排放量〜2-3 $ \ times $延长$均比UV Continuum排放多。在这里,我们探讨了[CII]线的表面亮度变暗(SBD)是否负责报告的[CII]缺陷以及大$ l _ {\ rm [oiii]}/l _ {\ rm [cii]} $亮度比在早期出现的$。我们首先分析[CII]和[OIII]中观察到的9 Z> 6个星系的档案ALMA图像。在进行了几个紫外线量实验以优化扩展线发射的识别之后,我们在整个样品中检测到[CII]发射,其范围大于[CII]发射。接下来,我们使用干涉模拟研究SBD对线发光度估计的影响。在0.8 $^{\ prime \ prime} $的角度分辨率上,可能会错过大约40%的扩展[CII]组件,这意味着$ l _ {\ rm [cii]} $低估了一个因子$ \ \ \ rm [cii]} $。通过结合这些结果,我们得出结论,z> 6个星系的$ l _ {\ rm [cii]} $平均位于略低于本地$ l _ {\ rm [cii]} - sfr $ relation($δ^^= 6-9} = 6-9} = 6-9} = - 0.07 \ pm0.3 $),但在内部intins inins inins inins inins inins inins inins insic。 SBD校正还产生$ l _ {\ rm [oiii]}/l _ {\ rm [CII]} <10 $,即与当前的流体动力学模拟相符。

ALMA observations have revealed that [CII] 158$μ$m line emission in high-z galaxies is ~2-3$\times$ more extended than the UV continuum emission. Here we explore whether surface brightness dimming (SBD) of the [CII] line is responsible for the reported [CII] deficit, and the large $L_{\rm [OIII]}/L_{\rm [CII]}$ luminosity ratio measured in early galaxies. We first analyse archival ALMA images of nine z>6 galaxies observed in both [CII] and [OIII]. After performing several uv-tapering experiments to optimize the identification of extended line emission, we detect [CII] emission in the whole sample, with an extent systematically larger than the [CII] emission. Next, we use interferometric simulations to study the effect of SBD on the line luminosity estimate. About 40% of the extended [CII] component might be missed at an angular resolution of 0.8$^{\prime\prime}$, implying that $L_{\rm [CII]}$ is underestimated by a factor $\approx2$ in data at low (<7) signal-to-noise ratio . By combining these results, we conclude that $L_{\rm [CII]}$ of z>6 galaxies lies, on average, slightly below the local $L_{\rm [CII]}-SFR$ relation ($Δ^{z=6-9}=-0.07\pm0.3$), but within the intrinsic dispersion of the relation. SBD correction also yields $L_{\rm [OIII]}/L_{\rm [CII]}<10$, i.e. more in line with current hydrodynamical simulations.

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