论文标题

阿尔玛(Alma)作为红移机器:使用[CII]在电离时期有效确认星系

ALMA as a Redshift Machine: Using [CII] to Efficiently Confirm Galaxies in the Epoch of Reionization

论文作者

Schouws, Sander, Bouwens, Rychard, Smit, Renske, Hodge, Jacqueline, Stefanon, Mauro, Witstok, Joris, Hilhorst, Juliëtte, Labbe, Ivo, Algera, Hiddo, Boogaard, Leindert, Maseda, Michael, Oesch, Pascal, Röttgering, Huub, van der Werf, Paul

论文摘要

长期以来,已提出[CII] $ _ {158μm} $线路,作为在电击时期确认星系的有前途的线路。在本文中,我们介绍了[CII]在$ z \ sim7 $的六个特别发光的Lyman破裂星系中对[CII]进行新的Alma观测光谱扫描的结果。这六个来源是从cosmos/ultravista领域的宽面积光学,近红外和Spitzer/irac数据鉴定出的明亮$ z \ sim7 $星系的样本中得出的,并根据其IRAC的红移(IRAC [3.6] - [4.5]颜色)的紧密约束。我们在我们的六个目标中的三个($ 50 \%$)的共同空间中发现了重要的($>9σ$)[CII]线,其余的$ UV $从地面/基于空间的近IIR成像中排出。 [CII]线的发光度在$ 5.6 $至$ 8.8 \ times10^{8} l _ {\ odot} $的范围内,与local [cii] -sfr关系一致。同时,与本地(u)lirgs相比,他们的[CII]/$ L_ {ir} \ sim1-3 \ times10^{ - 3} $比率略有升高。这可能是由于较低的尘埃气或灰尘与金属比率所致。我们还发现,我们的来源显示出较大的运动学多样性,其中一个来源显示旋转的迹象,一个来源可能是主要的合并,一个分散的来源可能包含一个明亮的星形团块。我们的结果强调了光谱扫描在光谱镜上确认电离时期发光星系的有效性,这是在正在进行的叛军大型计划中的明显更大样本上应用的。

The [CII]$_{158μm}$ line has long been proposed as a promising line to spectroscopically confirm galaxies in the epoch of reionization. In this paper we present the results of new ALMA observations spectral scanning for [CII] in six particularly luminous Lyman Break Galaxies at $z\sim7$. The six sources were drawn from a sample of bright $z\sim7$ galaxies identified using the wide-area optical, near-IR, and Spitzer/IRAC data over the COSMOS/UltraVISTA field and were targeted on the basis of tight constraints on their redshifts from their IRAC [3.6]-[4.5] colors. We detect significant ($>9σ$) [CII] lines in three of our six targets ($50\%$) co-spatial with the rest-$UV$ emission from the ground/space-based near-IR imaging. The luminosities of the [CII] lines lie in the range $5.6$ to $8.8\times10^{8}L_{\odot}$, consistent with the local [CII]-SFR relation. Meanwhile, their [CII]/$L_{IR}\sim1-3\times10^{-3}$ ratios are slightly elevated compared to local (U)LIRGS. This could be due to lower dust-to-gas or dust-to-metal ratios. We also find that our sources display a large kinematic diversity, with one source showing signs of rotation, one source a likely major merger and one dispersion dominated source that might contain a bright star-forming clump. Our results highlight the effectiveness of spectral scans with ALMA in spectroscopically confirming luminous galaxies in the epoch of reionization, something that is being be applied on a significantly larger sample in the on-going REBELS large program.

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