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首页> 外文期刊>The Astrophysical journal >THE ELONGATIONS AND SUPERSONIC MOTIONS OF MOLECULAR CLOUDS
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THE ELONGATIONS AND SUPERSONIC MOTIONS OF MOLECULAR CLOUDS

机译:分子团的伸长和超音速运动

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New ~(13)CO data from the BU-FCRAO Milky Way Galactic Ring Survey (GRS) are analyzed to elucidate the shape and internal motions of molecular clouds. For a sample of more than 500 molecular clouds, we find that they are preferentially elongated along the Galactic plane. On the other hand, their spin axes are randomly oriented. We therefore conclude that the elongation is not supported by internal spin but by internal velocity anisotropy. It has been known that some driving mechanisms are necessary to sustain the supersonic velocity dispersion within molecular clouds. The mechanism for generating the velocity dispersion must also account for the preferred elongation. This excludes some driving mechanisms, such as stellar winds and supernovae, because they do not produce the systemic elongation along the Galactic plane. Driving energy is more likely to come from large-scale motions, such as Galactic rotation.
机译:分析了来自BU-FCRAO银河系银河系环测(GRS)的新〜(13)CO数据,以阐明分子云的形状和内部运动。对于500多个分子云的样本,我们发现它们优先沿银河平面拉长。另一方面,它们的自旋轴是随机定向的。因此,我们得出的结论是,伸长率不受内部自旋支持,但受内部速度各向异性支持。已知某些驱动机制对于维持分子云内的超音速传播是必要的。产生速度色散的机制也必须考虑到优选的伸长率。这不包括某些驱动机制,例如恒星风和超新星,因为它们不会在银河系平面上产生系统性伸长。驱动能量更可能来自银河系旋转等大规模运动。

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