论文标题

块状弥散培养基中的光学特性和灰尘温度

Optical properties and dust temperatures in clumpy diffuse medium

论文作者

Ostrovskii, Andrei B., Parfenov, S. Yu., Vasyunin, A. I., Ivlev, A. V., Sokolova, V. A.

论文摘要

在这项研究中,我们探讨了不均匀性对星际尘埃的空间分布对$ \ le1 $ au的空间尺度的空间分布的影响,这是由离子阴影力引起的对弥漫性星际介质(ISM)以及尘埃温度的光学特性。我们表明,最近有人提出的可能性是,分散ISM中的星际粉尘颗粒分组在球形云中(团块)可能会严重影响与公共粉尘/气体混合物(如果块状粉碎机混合物)相比,弥漫性假设计算出的弥散性假设相比,如果Clumps $ \ Gtrsim $ \ Gtrsim0.1 $ au au au au。我们发现,随着灰尘团块的生长,弥漫性ISM任意区域的不透明度迅速降低。我们还研究了灰尘团块内的不透明度和灰尘温度的依赖性。我们表明,大于0.1 au的团块对于紫外线辐射是不透明的。尘埃温度在团块内表现出梯度,从边缘到中心降低了几个度,其团块的大小为0.1 au且较大。我们认为,大于0.1 au的团块内的灰尘温度和高不透明度可能有助于比以前预期的,在弥漫性ISM中在星际晶粒表面上的分子的合成效率更高。另一方面,与具有均匀的灰尘/气体混合物相比,尺寸低于0.1 au的团块对扩散ISM的光学特性产生了很小或微不足道的影响。

In this study, we explore the impact of inhomogeneities in the spatial distribution of interstellar dust on spatial scales of $\le1$ au caused by ion shadowing forces on the optical properties of diffuse interstellar medium (ISM) as well as on the dust temperature. We show that recently proposed possibility that interstellar dust grains in the diffuse ISM are grouped in spherical cloudlets (clumps) may significantly affect the observed optical properties of the diffuse ISM in comparison to that calculated under the commonly accepted assumption on the uniform dust/gas mixture if the size of clumps $\gtrsim0.1$ au. We found that opacity of an arbitrary region of diffuse ISM quickly decreases with growth of dusty clumps. We also studied the dependence of opacity and dust temperature inside the dusty clumps on their size. We show that the clumps larger than 0.1 au are opaque for far ultraviolet radiation. Dust temperature exhibit a gradient inside a clump, decreasing from the edge to the center by several degrees for a clump of a size of 0.1 au and larger. We argue that dust temperatures and high opacity within clumps larger than 0.1 au may facilitate somewhat more efficient synthesis of molecules on surfaces of interstellar grains in the diffuse ISM than it was anticipated previously. On the other hand, the presence of clumps with sizes below 0.1 au makes small or negligible influence on the optical properties of the diffuse ISM in comparison to the case with uniform dust/gas mixture.

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