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Properties of interstellar filaments as derived from Herschel, Planck, and molecular line observations

机译:从Herschel,Planck和分子线观察中衍生的星际簇的性质

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Recent Herschel and Planck observations of submillimeter dust emission revealed the omnipresence of filamentary structures in the interstellar medium(ISM). The ubiquity of filaments in quiescent clouds as well as in star-forming regions indicates that the formation of filamentary structures is a natural product of the physics at play in the magnetized turbulent cold ISM. An analysis of more than 270 filaments observed with Herschel in 8 regions of the Gould Belt, shows that interstellar filaments are characterized by a narrow distribution of central width sharply peaked at~0.1 pc, while they span a wide column density range. Molecular line observations of a sample of these filaments show evidence of an increase in the velocity dispersion of dense filaments with column density, suggesting an evolution in mass per unit length due to accretion of surrounding material onto these star-forming filaments. The analyses of Planck dust polarization observations show that both the mean magnetic field and its fluctuations along the filaments are different from those of their surrounding clouds. This points to a coupling between the matter and the B-field in the filament formation process. These observational results, derived from dust and gas tracers in total and polarized intensity, set strong constraints on our understanding of the formation and evolution of filaments in the ISM. They provide important clues on the initial conditions of the star formation process along interstellar filaments.
机译:最近的Herschel和Planck对杂散粉尘排放的观察显示膜中丝瘤中丝状结构的无所不在,呈现出裂缝介质(ISM)。静止云层中的长丝以及恒星形成区域的泛滥表明,丝状结构的形成是磁化湍流冷ISM中游戏的物理学的天然产物。在古德带的8个区域中,用Herschel观察到超过270根长丝的分析表明,星际长丝的特征在于中央宽度的窄分布,在约0.1pc上达到尖锐的峰值,而它们跨越宽柱密度范围。这些长丝的样品的分子线观察显示了致密细丝与柱密度的速度分散的增加,这表明由于周围材料的增加,因此在这些星形形成的长丝上产生的质量的进化。普朗克粉尘极化观察的分析表明平均磁场和沿着长丝的波动都不同于周围云的云。这指向丝形成过程中的物质和B场之间的耦合。这些观察结果,源于总和极化强度的灰尘和天然气示踪剂,对我们对ISM中长丝的形成和演化的理解,对我们的理解产生了强烈的限制。它们提供了沿星星突出的星形形成过程的初始条件的重要线索。

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