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Molecular Cores and Young Clusters of Star Forming Regions

机译:恒星形成区的分子核心和年轻簇

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By using the 13.7 m millimeter wave telescope of the Qinghai Station of Purple Mountain Observatory at Delingha, we have performed the mapping observations simultaneously at the (J=1-0) lines of ~(12)CO, ~(13)CO and C~(18)O towards respectively the 17 star forming regions associated with clusters. All of them show rather strong C~(18)O emission, except IRAS 04547+4753. Because of the different sizes of molecular clouds, there are 13 regions being observed to the half maximum of ~(13)CO integrated intensity, and the large-area mapping observation has not been made for the other 4 regions with rather large extents. Based on the observed data, the physical properties of molecular cores are calculated, such as the line width, brightness temperature, size, density and mass. The averaged ratios of the virial mass Mvir and local thermodynamic equilibrium mass MLTE of the ~(13)CO and C~(18)O cores are 0.66 and 0.74, respectively, suggesting that these cores are nearly at the virial equilibrium state. In order to compare the cores and clusters in morphologies, the contour maps of the integrated intensities of ~(13)CO and C~(18)O are overlaid on the K-band images of 2MASS. At the same time, the sizes and masses of the clusters associated with cores are calculated by adopting the photometric results of the near-infrared point sources in 2MASS database. Based on the derived masses of the molecular cores and clusters, the star formation efficiency (SFE) is calculated for the molecular clouds, and we find that it varies in the range from 10% to 30%.
机译:通过使用德令哈紫色山天文台青海站青海站的13.7 m毫米波望远镜,我们在〜(12)CO,〜(13)CO和C的(J = 1-0)线同时进行了测绘观测〜(18)O分别朝向与星团相关的17个恒星形成区域。除了IRAS 04547 + 4753,它们都表现出相当强的C〜(18)O发射。由于分子云的大小不同,在〜(13)CO集成强度的最大值的一半处观察到了13个区域,而对其他4个区域却没有进行大范围的制图观察。根据观察到的数据,计算分子核的物理性质,例如线宽,亮度温度,尺寸,密度和质量。 〜(13)CO和C〜(18)O核的病毒质量Mvir和局部热力学平衡质量MLTE的平均比分别为0.66和0.74,表明这些核几乎处于病毒平衡状态。为了比较核和簇的形态,将〜(13)CO和C〜(18)O的积分强度的等高线图覆盖在2MASS的K带图像上。同时,通过采用2MASS数据库中近红外点光源的光度结果,计算了与核相关的团簇的大小和质量。根据分子核和团簇的推导质量,计算分子云的恒星形成效率(SFE),我们发现它的变化范围为10%到30%。

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