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The Single-cloud Star Formation Relation

机译:单云星形成关系

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One of the most important and well-established empirical results in astronomy is the Kennicutt-Schmidt relation between the density of interstellar gas and the rate at which that gas forms stars. A tight correlation between these quantities has long been measured at galactic scales. More recently, using surveys of YSOs, a KS relationship has been found within molecular clouds relating the surface density of star formation to the surface density of gas; however, the scaling of these laws varies significantly from cloud to cloud. In this Letter, we use a recently developed, high-accuracy catalog of young stellar objects from Spitzer combined with high-dynamic-range gas column density maps of 12 nearby (<1.5 kpc) molecular clouds from Herschel to re-examine the KS relation within individual molecular clouds. We find a tight, linear correlation between clouds' star formation rate per unit area and their gas surface density normalized by the gas freefall time. The measured intracloud KS relation, which relates star formation rate to the volume density, extends over more than two orders of magnitude within each cloud and is nearly identical in each of the 12 clouds, implying a constant star formation efficiency per freefall time epsilon (ff) approximate to 0.026. The finding of a universal correlation within individual molecular clouds, including clouds that contain no massive stars or massive stellar feedback, favors models in which star formation is regulated by local processes such as turbulence or stellar feedback such as protostellar outflows, and disfavors models in which star formation is regulated only by galaxy properties or supernova feedback on galactic scales.
机译:天文学中最重要且公认的经验结果之一是星际气体密度与气体形成恒星的速率之间的肯尼克特-施密特关系。长期以来,人们一直在银河系尺度上测量这些量之间的紧密关联。最近,通过对YSO的调查,在分子云中发现了KS关系,将恒星形成的表面密度与气体的表面密度联系起来;然而,这些定律的尺度因云而异。在这封信中,我们使用斯皮策最近开发的高精度年轻恒星天体目录,结合赫歇尔附近12个(<1.5 kpc)分子云的高动态范围气柱密度图,重新检查单个分子云内的KS关系。我们发现云单位面积的恒星形成率和气体自由落体时间归一化的气体表面密度之间存在紧密的线性关系。测得的云内KS关系将恒星形成速率与体积密度联系起来,在每个云中延伸超过两个数量级,在12个云中几乎相同,这意味着每自由落体时间ε(ff)的恒星形成效率恒定,约为0.026。在单个分子云(包括不含大质量恒星或大质量恒星反馈的云)中发现普遍相关性,有利于建立恒星形成受局部过程(如湍流)或恒星反馈(如原恒星外流)调节的模型,而且不赞成只由星系性质或星系尺度上的超新星反馈来调节恒星形成的模型。

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