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Resolving the Kinematic Distance Ambiguity toward Galactic H II Regions

机译:解决对银河H II区的运动距离歧义

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Kinematic distance determinations in the inner Galaxy are hampered by the near-far kinematic distance ambiguity. Here we resolve the ambiguity for 49 H II region complexes with known recombination-line velocities in the first Galactic quadrant. We measured the 21 cm H I absorption spectrum toward each source with the Very Large Array in the C array. The maximum velocity of H I absorption was used to discriminate between the near and far kinematic distances. The number ratio of far to near sources, ~3, can be entirely explained as a geometrical effect. The kinematic distances that we derive are compared with previous determinations for the same sources. Although our distance determinations are largely in agreement with previous measurements, there are 22 discrepancies that we discuss. Using our distance determinations, we create a face-on Galactic map of the H II region complexes and compare it with a kinematically derived profile of the distribution of CO-traced molecular hydrogen. The H II region complexes delineate the large-scale features seen in the molecular gas. The 5 kpc molecular ring and the Sagittarius spiral arm are clearly evident, and a few H II region complexes lie in the Perseus arm.
机译:内银河系中的运动距离确定受到近距离运动距离模糊性的阻碍。在这里,我们解决了第一个银河象限中具有已知重组线速度的49个H II区复合物的歧义。我们使用C阵列中的超大阵列测量了每个光源对21 cm H I的吸收光谱。 H I吸收的最大速度用于区分近运动距离和远运动距离。远近源数比〜3可以完全解释为几何效应。我们将得出的运动距离与相同源的先前确定值进行比较。尽管我们的距离确定与以前的测量基本吻合,但我们讨论了22个差异。使用我们的距离确定,我们创建了H II区域配合物的正面银河图,并将其与运动学得出的CO追踪的分子氢分布进行了比较。 H II区络合物描述了分子气体中的大规模特征。 5 kpc分子环和射手座螺旋臂清晰可见,珀尔修斯臂中有一些H II区域复合物。

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