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Molecular gas in distant galaxies from ALMA studies

机译:来自Alma研究的遥远星系中的分子气体

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ALMA is now fully operational, and has been observing in early science mode since 2011. The millimetric (mm) and sub-mm domain is ideal to tackle galaxies at high redshift, since the emission peak of the dust at 100 mu m is shifted in the ALMA bands (0.3-1 mm) for z = 2-9, and the CO lines, stronger at the high-J levels of the ladder, are found all over the 0.3-3 mm range. Pointed surveys and blind deep fields have been observed, and the wealth of data collected reveal a drop at high redshifts (z 6) of dusty massive objects, although surprisingly active and gas-rich objects have been unveiled through gravitational lensing. The window of the reionization epoch is now wide open, and ALMA has detected galaxies at z = 8-9 mainly in continuum, [CII] and [OIII] lines. Galaxies have a gas fraction increasing steeply with redshift, as (1+ z)(2), while their star formation efficiency increases also but more slightly, as (1 + z)(0.6) to (1 + z)(1). Individual object studies have revealed luminous quasars, with black hole masses much higher than expected, clumpy galaxies with resolved star formation rate compatible with the Kennicutt-Schmidt relation, extended cold and dense gas in a circumgalactic medium, corresponding to Lyman-alpha blobs, and proto-clusters, traced by their brightest central galaxies.
机译:Alma现在完全运行,自2011年以来一直在早期的科学模式中观察。毫米(mm)和亚mm域是在高射频处的铲球星系,因为100 mu m的灰尘的排放峰被移位Z = 2-9的ALMA带(0.3-1 mm),以及梯子的高j级更强的CO线,都在0.3-3mm范围内。已经观察到尖头调查和盲目的深场,并且收集的数据的大量数据显示了尘埃大量物体的高射频(Z> 6)下降,尽管通过引力透镜推出了令人惊讶的活性和富含气体的物体。标签时代的窗口现在是宽开放的,Alma主要在连续核,[CII]和[oiii]线上以Z = 8-9检测到星系。星系具有陡峭的气体部分随着红移而急剧增加,如(1+ Z)(2),而它们的星形成效率也增加但更略微增加,如(1 + Z)(0.6)至(1 + Z)(1)。个体对象研究揭示了发光的Quasars,黑洞肿块远远高于预期的,块状星系与kennicutt-schmidt关系的分辨星形形成速率相容,延长了鳞片状培养基中的冷和致密气体,对应于Lyman-alpha Blob,和原始集群,被最亮的中央星系追踪。

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