论文标题

银河风中的灰尘夹带

Dust entrainment in galactic winds

论文作者

Kannan, Rahul, Vogelsberger, Mark, Marinacci, Federico, Sales, Laura V., Torrey, Paul, Hernquist, Lars

论文摘要

由恒星反馈驱动的风是银河生态系统的重要组成部分,是低质量星系调节其恒星形成的主要机制。通常观察到这些风是多相,检测到夹带的中性气和分子气体。他们还被认为可以用金属和灰尘丰富星系周围的圆形培养基。这种弹出的灰尘编码有关星系的综合恒星形成和流出历史的信息。因此,重要的是要了解带有银河风将多少灰尘从光盘中驱逐出去。在这里,我们证明了恒星反馈有效地驱动富含灰尘的风和弹射足够的材料,以说明附近星系中观察到的外粉尘的数量。风中的灰尘量取决于它们发射的地点,而灰尘的星系越来越多地散发出灰尘。此外,与填充热的脆弱材料相比,流出的冷致密气体富含灰尘,自然地重现了附近星系中观察到的流出风的复杂多相结构。这些结果为银河风的动力学,结构和组成提供了重要的新见解,及其在确定星系外层流气体的尘埃含量中的作用。

Winds driven by stellar feedback are an essential part of the galactic ecosystem and are the main mechanism through which low-mass galaxies regulate their star formation. These winds are generally observed to be multi-phase with detections of entrained neutral and molecular gas. They are also thought to enrich the circum-galactic medium around galaxies with metals and dust. This ejected dust encodes information about the integrated star formation and outflow history of the galaxy. It is therefore, important to understand how much dust is entrained and driven out of the disc by galactic winds. Here we demonstrate that stellar feedback is efficient in driving dust-enriched winds and eject enough material to account for the amount of extraplanar dust observed in nearby galaxies. The amount of dust in the wind depends on the sites from where they are launched, with dustier galaxies launching more dust enriched outflows. Moreover, the outflowing cold-dense gas is significantly more dust-enriched than the volume filling hot tenuous material, naturally reproducing the complex multiphase structure of the outflowing wind observed in nearby galaxies. These results provide an important new insight into the dynamics, structure, and composition of galactic winds and their role in determining the dust content of the extragalactic gas in galaxies.

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