首页> 外文期刊>The Astrophysical journal >SYNTHETIC OBSERVATIONS OF THE EVOLUTION OF STARLESS CORES IN A MOLECULAR CLOUD SIMULATION: COMPARISONS WITH JCMT DATA AND PREDICTIONS FOR ALMA
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SYNTHETIC OBSERVATIONS OF THE EVOLUTION OF STARLESS CORES IN A MOLECULAR CLOUD SIMULATION: COMPARISONS WITH JCMT DATA AND PREDICTIONS FOR ALMA

机译:分子云模拟中星心演化的综合观察:与JCMT数据的比较和ALMA的预测

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Interpreting the nature of starless cores has been a prominent goal in star formation for many years. In order to characterize the evolutionary stages of these objects, we perform synthetic observations of a numerical simulation of a turbulent molecular cloud. We find that nearly all cores that we detect are associated with filaments and eventually form protostars. We conclude that observed starless cores that appear Jeans unstable are only marginally larger than their respective Jeans masses (within a factor of three). We note single dish observations such as those performed with the James Clerk Maxwell Telescope appear to miss significant core structure on small scales because of beam averaging. Finally, we predict that interferometric observations with Atacama Large Millimeter Array Cycle?1 will resolve the important small-scale structure, which has so far been missed by millimeter wavelength observations.
机译:多年来,解释无恒星核的性质一直是恒星形成的一个重要目标。为了表征这些物体的演化阶段,我们对湍流分子云的数值模拟进行了综合观察。我们发现,我们检测到的几乎所有核都与细丝相关,并最终形成原恒星。我们得出的结论是,观察到的,出现牛仔裤不稳定的无星核仅略大于其各自的牛仔裤质量(三分之一)。我们注意到像詹姆斯·克莱克·麦克斯韦望远镜所做的单碟观测由于波束平均,似乎在小规模上错过了显着的核心结构。最后,我们预测用阿塔卡马大毫米波阵列周期1进行干涉观测将解决重要的小规模结构,而到目前为止,毫米波波长观测已经错过了这种结构。

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