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首页> 外文期刊>The Astrophysical journal >DUST HEATING BY THE INTERSTELLAR RADIATION FIELD IN MODELS OF TURBULENT MOLECULAR CLOUDS
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DUST HEATING BY THE INTERSTELLAR RADIATION FIELD IN MODELS OF TURBULENT MOLECULAR CLOUDS

机译:湍流分子模型中星际辐射场的粉尘加热

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摘要

We have calculated the radiation field, dust grain temperatures, and far-infrared emissivity of numerical models of turbulent molecular clouds. When compared to a uniform cloud of the same mean optical depth, most of the volume inside the turbulent cloud is brighter, but most of the mass is darker. There is little mean attenuation from center to edge, and clumping causes the radiation field to be somewhat bluer. There is also a large dispersion, typically by a few orders of magnitude, of all quantities relative to their means. However, despite the scatter, the 850 μm emission maps are well correlated with surface density. The fraction of mass as a function of intensity can be reproduced by a simple hierarchical model of density structure.
机译:我们已经计算了湍流分子云数值模型的辐射场,尘埃颗粒温度和远红外发射率。与具有相同平均光学深度的均匀云相比,湍流云中的大部分体积更亮,但是大部分质量更暗。从中心到边缘的平均衰减很小,并且结块使辐射场变蓝。相对于其平均值,所有数量也存在较大的分散,通常分散几个数量级。但是,尽管有散射,但850μm的发射图与表面密度很好地相关。质量分数作为强度的函数可以通过密度结构的简单分层模型来再现。

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