论文标题
分子云的扩散信封中的灰尘丝的形成
Formation of dust filaments in the diffuse envelopes of molecular clouds
论文作者
论文摘要
理解恒星形成过程的途径始于研究分子云的形成。这些云的郊区的特征是低柱密度,允许紫外线辐射渗透,导致不可忽略的电离分数以及与气体混合的小尘土晶粒的充电;然后将该弥漫相耦合到环境磁场。尽管人们普遍认为灰尘和气体密切相关,但一些观察性和理论研究报告了尘埃气比弥漫性和冷云的变化。在这项工作中,我们介绍了一个新的带电粒子模块的实施,用于分析分子云信封中的灰尘动态。我们研究了使用此模块研究湍流,磁化分子云包膜中单个小型电荷晶粒(0.05 $ $ m)的单个种群的演变。我们表明,由于晶粒与磁场的耦合,尘埃气比的变化发生了,形成与气体与气体解耦的细长灰尘结构。这强调了在模拟星际介质的不同阶段时,特别是对于恒星形成研究时,考虑带电灰尘的动力学的重要性。
The path to understanding star formation processes begins with the study of the formation of molecular clouds. The outskirts of these clouds are characterized by low column densities that allow the penetration of ultraviolet radiation, resulting in a non-negligible ionization fraction and the charging of the small dust grains that are mixed with the gas; this diffuse phase is then coupled to the ambient magnetic field. Despite the general assumption that dust and gas are tightly correlated, several observational and theoretical studies have reported variations in the dust-to-gas ratio toward diffuse and cold clouds. In this work, we present the implementation of a new charged particles module for analyzing the dust dynamics in molecular cloud envelopes. We study the evolution of a single population of small charged grains (0.05 $μ$m) in the turbulent, magnetized molecular cloud envelope using this module. We show that variations in the dust-to-gas ratio arise due to the coupling of the grains with the magnetic field, forming elongated dust structures decoupled from the gas. This emphasizes the importance of considering the dynamics of charged dust when simulating the different phases of the interstellar medium, especially for star formation studies.