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Ionisation impact of high-mass stars on interstellar filaments: A Herschel study of the RCW36 bipolar nebula in Vela C

机译:高质量恒星对星际细丝的电离影响:Herschel对Vela C中RCW36双极星云的研究

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摘要

Context. Ionising stars reshape their original molecular cloud and impact star formation, leading to spectacular morphologies such as bipolar nebulae around H ii regions. Molecular clouds are structured in filaments where stars principally form, as revealed by the Herschel space observatory. The prominent southern hemisphere H ii region, RCW 36, is one of these bipolar nebulae. Aims. We study the physical connection between the filamentary structures of the Vela C molecular cloud and the bipolar morphology of RCW 36, providing an in-depth view of the interplay occurring between ionisation and interstellar structures (bright-rims and pillars) around an H ii region. Methods. We have compared Herschel observations in five far-infrared and submillimetre filters with the PACS and SPIRE imagers, to dedicated numerical simulations and molecular line mapping. Results. Our results suggest that the RCW 36 bipolar morphology is a natural evolution of its filamentary beginnings under the impact of ionisation. Conclusions. Such results demonstrate that, filamentary structures can be the location of very dynamical phenomena inducing the formation of dense clumps at the edge of H ii regions. Moreover, these results could apply to better understanding the bipolar nebulae as a consequence of the expansion of an H ii region within a molecular ridge or an interstellar filament. © 2013 ESO.
机译:上下文。电离星会重塑其原始分子云并影响恒星的形成,从而形成壮观的形态,例如H ii区附近的双极星云。正如赫歇尔太空天文台所揭示的那样,分子云由细丝构成,主要由恒星形成。著名的南半球H ii地区RCW 36是这些双极星云之一。目的我们研究了Vela C分子云的丝状结构与RCW 36的双极形态之间的物理联系,从而深入了解了Hii区域周围的电离与星际结构(明亮的边缘和支柱)之间的相互作用。方法。我们已经将使用PACS和SPIRE成像仪的五个远红外和亚毫米滤波器中的Herschel观测值与专用数值模拟和分子线图进行了比较。结果。我们的结果表明,RCW 36双极形态是在电离作用下其丝状起点的自然演变。结论。这样的结果表明,丝状结构可以是非常动态的现象的位置,其引起在H ii区域的边缘形成致密的团块。此外,由于分子脊或星际细丝中H ii区域的扩展,这些结果可用于更好地理解双极星云。 ©2013 ESO。

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