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Interaction of Infall and Winds in Young Stellar Objects

机译:年轻恒星物体中的入风与风的相互作用

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摘要

The interaction of a stellar or disk wind with a collapsing environment holds promise for explaining a variety of outflow phenomena observed around young stars. In this paper we present the first simulations of these interactions. The focus here is on exploring how ram pressure balance between wind and ambient gas and post-shock cooling affects the shape of the resulting outflows. In our models we explore the role of ram pressure and cooling by holding the wind speed constant and adjusting the ratio of the inflow mass flux to the wind mass flux (Mdot_a/Mdot_w) Assuming non-spherical cloud collapse, we find that relatively strong winds can carve out wide, conical outflow cavities and that relatively weak winds can be strongly collimated into jet-like structures. If the winds become weak enough, they can be cut off entirely by the infalling environment. We identify discrepancies between results from standard snowplow models and those presented here that have important implications for molecular outflows. We also present mass vs. velocity curves for comparison with observations.
机译:恒星或盘状风与坍塌环境的相互作用为解释在年轻恒星周围观察到的各种流出现象提供了希望。在本文中,我们介绍了这些相互作用的第一个模拟。这里的重点是探讨风与环境气体之间的冲头压力平衡以及震后冷却如何影响最终流出的形状。在我们的模型中,我们通过保持风速恒定并调整流入质量通量与风量通量的比值(Mdot_a / Mdot_w),探索了冲压压力和冷却的作用。假设非球形云塌陷,我们发现相对较强的风可以切出较大的圆锥形流出腔,并且相对弱的风可以强烈地准直成喷射状结构。如果风变得足够微弱,则可以被落入的环境完全切断。我们确定标准扫雪机模型的结果与此处介绍的结果之间的差异,这些差异对分子流出具有重要意义。我们还提出了质量与速度的关系曲线,以便与观察结果进行比较。

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