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Mass reservoirs surrounding massive infrared dark clouds - A view by near-infrared dust extinction

机译:巨大的红外黑云周围的大容量储层-近红外尘埃消光的视角

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Context. Infrared dark clouds (IRDCs) harbor progenitors of high-mass stars. Little is known of the parental molecular clouds of IRDCs. Aims. We demonstrate the feasibility of the near-infrared (NIR) dust extinction mapping in tracing the parental molecular clouds of IRDCs at the distances of D?≈?2.5?8?kpc. Methods. We derive NIR extinction maps for 10 prominent IRDC complexes using a color-excess mapping technique and NIR data from the UKIDSS/Galactic Plane Survey. We compare the resulting maps to the 13CO emission line data, to the 8?μm dust opacity data, and to the millimeter dust emission data. We derive distances for the clouds by comparing the observed NIR source densities to the Besan?on stellar distribution model and compare them to the kinematic distance estimates. Results. The NIR extinction maps provide a view of the IRDC complexes over the dynamical range of AV?≈?2???40?mag, in spatial resolution of ?~30″. The NIR extinction data correlate well with the 13CO data and probe a similar gas component, but also extend to higher column densities. The NIR data reveal a wealth of extended structures surrounding the dense gas traced by the 8?μm shadowing features and sub-mm dust emission, showing that the clouds contain typically ???10 times more mass than traced by those tracers. The IRDC complexes of our sample contain a relatively high amount of high-column density material, and their cumulative column density distributions resemble active nearby star-forming clouds like Orion rather than less active clouds like California. Conclusions. The NIR dust extinction data provide a new powerful tool to probe the mass distribution of the parental molecular clouds of IRDCs up to the distances of D?~?8?kpc. This encourages deeper NIR observations of IRDCs, because the sensitivity and resolution of the data can be directly enhanced with dedicated observations. In addition to mass distributions, the NIR data provide relatively reliable distance estimates.
机译:上下文。红外暗云(IRDC)藏有高质量恒星的祖先。对IRDC的亲代分子云知之甚少。目的我们证明了近红外(NIR)消光粉尘制图在追踪DDC≈2.5≤8≤kpc距离的IRDC亲代分子云中的可行性。方法。我们使用色差过大的映射技术和来自UKIDSS /银河系平面调查的NIR数据得出10个重要IRDC复合物的NIR消光图。我们将结果图与13CO排放线数据,8?m灰尘不透明度数据和毫米级灰尘排放数据进行比较。我们通过将观测到的近红外源密度与Besan?on恒星分布模型进行比较,并将它们与运动距离估计值进行比较,得出云的距离。结果。 NIR消光图提供了在AV?≈?2 ??? 40?mag的动态范围内,空间分辨率为?〜30”的IRDC复合物的视图。 NIR消光数据与13CO数据具有很好的相关性,并探测了类似的气体组分,但同时也扩展到了更高的色谱柱密度。 NIR数据揭示了围绕8μm阴影特征和亚毫米粉尘排放所跟踪的致密气体周围的大量扩展结构,表明云的质量通常比那些示踪剂所跟踪的质量大10倍。我们样品的IRDC配合物包含相对大量的高柱密度物质,并且它们的累积柱密度分布类似于附近活跃的恒星形成云(如猎户座),而不是活跃度较低的云(如加利福尼亚州)。结论。 NIR尘埃消灭数据提供了一个新的强大工具,可以探测IRDC的亲代分子云的质量分布,直至D?〜?8?kpc的距离。这鼓励了对IRDC进行更深入的NIR观测,因为可以通过专用观测直接提高数据的敏感性和分辨率。除了质量分布,NIR数据还提供了相对可靠的距离估计。

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