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Unexpected stellar velocity distribution in the warped Galactic disk

机译:扭曲的银河盘中的意外恒星速度分布

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It is now over 40 years since radio observations of neutral hydrogen revealed the gaseous disk of our Galaxy to be warped. Subsequently, the warp has been detected in the distribution of Galactic dust, molecular clouds, and luminous stars. Roughly half of all spiral galaxies have similarly warped disks, which suggests that warps are a common and long-lived phenomenon. However, there is still no consensus as to what induces galactic disks to become warped: intergalactic winds, tidal interactions with satellites, magnetic pressure and massive dark haloes have all been proposed as causative agents. Here we use data from the Hipparcos satellite to determine the small stellar motions in the plane of the sky (proper motions) that should accompany the warp, but which are undetectable in the gas. We find that although the spatial distribution of the stars is in line with previous studies of hydrogen, the velocity distribution has the opposite sign to that expected. Finding a plausible explanation of this result may be the key to solving the long-standing puzzle posed by galactic warps.
机译:自从中性氢的无线电观测揭示出我们的银河系气碟发生扭曲以来,已有40多年了。随后,在银河尘埃,分子云和发光恒星的分布中检测到了翘曲。在所有旋涡星系中,大约有一半具有类似的翘曲盘,这表明翘曲是常见且长期存在的现象。但是,关于导致银河盘变形的原因仍未达成共识:银河系间的风,与卫星的潮汐相互作用,磁压力和大量暗晕都被认为是致病因素。在这里,我们使用来自Hipparcos卫星的数据来确定应该伴随扭曲但在气体中无法检测到的,在天空平面中的微小恒星运动(正确的运动)。我们发现,尽管恒星的空间分布与先前对氢的研究一致,但速度分布与预期的相反。找到一个合理的解释可能是解决银河扭曲长期存在的难题的关键。

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