论文标题

恒星形成的初始条件:丝状ISM的物理描述

Initial Conditions for Star Formation: A Physical Description of the Filamentary ISM

论文作者

Hacar, A., Clark, S, Heitsch, F., Kainulainen, J., Panopoulou, G., Seifried, D., Smith, R.

论文摘要

星际培养基包含在各个尺度上的丝状结构。理解这种结构的作用,既是范围内气体的管道,又是局部物理学的诊断工具,都是恒星形成研究的主要重点。我们回顾了研究ISM中丝状结构的最新进展,从物理过程中解释其特性,并探索形成和进化场景。我们包括从观测和理论的角度,包括从银河尺度细丝到十分之一的细丝,包括分子和原子结构。除文献概述外,我们还收集了来自不同调查的大量目录数据,并提供迄今为止最全面的丝状结构普查。我们的人口普查由22303个丝状结构组成,促进了整体观点和新的见解。我们使用人口普查进行荟萃分析,从而描述了长度四个级数的细丝性质,质量为8个。我们的分析强调了丝状结构的层次和动力学性质。细丝不孤立地生活,它们通常类似于接近平衡的静态结构。我们建议在细丝形成期间的积聚和演化设置细丝的某些关键缩放特性。这凸显了积聚在丝形成和演变中的作用,以及在设定恒星形成的初始条件中的作用。总体而言,在过去十年中对丝状结构的研究是在观察中驱动的。尽管在衡量细丝的基本特性方面取得了巨大进展,但我们对它们的形成和进化的理解显然缺乏。在这种情况下,我们确定了许多方向和问题,我们认为最迫在眉睫。

The interstellar medium contains filamentary structure over a wide range of scales. Understanding the role of this structure, both as a conduit of gas across the scales and a diagnostic tool of local physics, is a major focus of star formation studies. We review recent progress in studying filamentary structure in the ISM, interpreting its properties in terms of physical processes, and exploring formation and evolution scenarios. We include structures from galactic-scale filaments to tenth-of-a-parsec scale filaments, comprising both molecular and atomic structures, from both observational and theoretical perspectives. In addition to the literature overview, we assemble a large amount of catalogue data from different surveys and provide the most comprehensive census of filamentary structures to date. Our census consists of 22 803 filamentary structures, facilitating a holistic perspective and new insights. We use our census to conduct a meta-analysis, leading to a description of filament properties over four orders of magnitudes in length and eight in mass. Our analysis emphasises the hierarchical and dynamical nature of filamentary structures. Filaments do not live in isolation, nor they generally resemble static structures close to equilibrium. We propose that accretion during filament formation and evolution sets some of the key scaling properties of filaments. This highlights the role of accretion during filament formation and evolution and also in setting the initial conditions for star formation. Overall, the study of filamentary structures during the past decade has been observationally driven. While great progress has been made on measuring the basic properties of filaments, our understanding of their formation and evolution is clearly lacking. In this context, we identify a number of directions and questions we consider most pressing for the field.

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