论文标题

细丝崩溃:两相过程

Filament collapse: a two phase process

论文作者

Hoemann, Elena, Heigl, Stefan, Burkert, Andreas

论文摘要

使用数值模拟,我们研究了丝状分子云结构的重力演化及其将其缩合到密集的原始核心中。一个可能的过程是所谓的“边缘效应”,即由于自治而导致细丝结束时物质的堆积。从理论上预测了这种效果,但很少观察到。为了更好地了解基本过程,我们使用了一种简单的分析方法来描述崩溃和相应的崩溃时间。我们确定了两个不同阶段的模型:由于灯丝的自重,第一阶段是自由下落的。在第二阶段,在转折点之后,塌陷由灯丝内部物质产生的RAM压力平衡,从而导致恒定的塌陷速度。这种方法再现了均匀密度丝的既定崩溃时间,并与我们的流体动力模拟很好地吻合。此外,我们研究了不同的径向密度谱对塌陷的影响。我们发现,与均匀细丝相比,偏差小于10%。因此,均匀密度细丝的分析塌陷模型是一种极好的一般方法。

Using numerical simulations, we investigate the gravitational evolution of filamentary molecular cloud structures and their condensation into dense protostellar cores. One possible process is the so called 'edge effect', the pile-up of matter at the end of the filament due to self-gravity. This effect is predicted by theory but only rarely observed. To get a better understanding of the underlying processes we used a simple analytic approach to describe the collapse and the corresponding collapse time. We identify a model of two distinct phases: The first phase is free fall dominated, due to the self-gravity of the filament. In the second phase, after the turning point, the collapse is balanced by the ram pressure, produced by the inside material of the filament, which leads to a constant collapse velocity. This approach reproduces the established collapse time of uniform density filaments and agrees well with our hydrodynamic simulations. In addition, we investigate the influence of different radial density profiles on the collapse. We find that the deviations compared to the uniform filament are less than 10%. Therefore, the analytic collapse model of the uniform density filament is an excellent general approach.

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