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首页> 外文期刊>The Astrophysical journal >The Resolved Properties Of Extragalactic Giant Molecular Clouds
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The Resolved Properties Of Extragalactic Giant Molecular Clouds

机译:星系外巨分子云的解析性质

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We use high spatial resolution observations of CO to systematically measure the resolved size-line width, luminosity-line width, luminosity-size, and mass-luminosity relations of GMCs in a variety of extragalactic systems. Although the data are heterogeneous, we analyze them in a consistent manner to remove the biases introduced by limited sensitivity and resolution, thus obtaining reliable sizes, velocity dispersions, and luminosities. We compare the results obtained in dwarf galaxies with those from the Local Group spiral galaxies. We find that extragalactic GMC properties measured across a wide range of environments are very much compatible with those in the Galaxy. The property that shows the largest variability is their resolved brightness temperature, although even that is similar to the average Galactic value in most sources. We use these results to investigate metallicity trends in the cloud average column density and virial CO-to-H_2 factor. We find that these measurements do not accord with simple predictions from photoionization-regulated star formation theory, although this could be due to the fact that we do not sample small enough spatial scales or the full gravitational potential of the molecular cloud. We also find that the virial CO-to-H_2 conversion factor in CO-bright GMCs is very similar to Galactic and that the excursions do not show a measurable metallicity trend. We contrast these results with estimates of molecular mass based on far-infrared measurements obtained for the Small Magellanic Cloud, which systematically yield larger masses, and interpret this discrepancy as arising from large H_2 envelopes that surround the CO-bright cores. We conclude that GMCs identified on the basis of their CO emission are a unique class of objects that exhibit a remarkably uniform set of properties from galaxy to galaxy.
机译:我们使用CO的高空间分辨率观测值来系统地测量各种河外系统中GMC的分辨尺寸线宽度,亮度线宽度,亮度尺寸和质量-亮度关系。尽管数据是异类的,但我们以一致的方式对其进行了分析,以消除有限的灵敏度和分辨率所引起的偏差,从而获得可靠的尺寸,速度色散和亮度。我们比较了矮星系和本地群旋涡星系中获得的结果。我们发现,在广泛的环境中测得的银河外GMC特性与Galaxy中的特性非常兼容。可变性最大的属性是其分辨的亮度温度,尽管即使与大多数光源的平均银河值相似。我们使用这些结果来调查云平均柱密度和病毒CO-to-H_2因子中的金属化趋势。我们发现这些测量值与光电离调节恒星形成理论的简单预测不符,尽管这可能是由于我们没有对足够小的空间尺度或分子云的全部引力进行采样所致。我们还发现,在CO亮的GMC中,病毒从CO到H_2的转换因子与Galactic非常相似,并且偏移没有显示出可测量的金属化趋势。我们将这些结果与基于小麦哲伦星云获得的远红外测量值的分子量估算值进行对比,该估算值系统地产生了较大的质量,并将这种差异解释为是由围绕CO亮核的大H_2包膜引起的。我们得出的结论是,根据其一氧化碳排放确定的GMC是一类独特的物体,它们从银河系到银河系均显示出非常统一的特性。

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