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Was a cloud-cloud collision the trigger of the recent star formation in Serpens?

机译:云雾碰撞是否是塞彭斯最近恒星形成的触发因素?

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Context. The complexity of the interstellar medium (ISM) is such that it is unlikely that star formation is initiated in the same way in all molecular clouds. While some clouds seem to collapse on their own, others may be triggered by an external event such as a cloud/flow collision forming a gravitationally unstable enhanced density layer. Aims. This work tests cloud-cloud collisions as the triggering mechanism for star formation in the Serpens Main Cluster as has been suggested by previous work. Methods. A set of smoothed particle hydrodynamics (SPH) simulations of the collision between two cylindrical clouds are performed and compared to (sub)millimetre observations of the Serpens Main Cluster. Results. A configuration was found that reproduces many of the observed characteristics of Serpens, including some of the main features of the peculiar velocity field. The evolution of the velocity with position throughout the model is similar to the observed one and the column density and masses within the modelled cloud agree with those measured for the SE sub-cluster. Furthermore, our results also show that an asymmetric collision provides the ingredients to reproduce lower density filaments perpendicular to the main structure, similar to those observed. In this scenario, the formation of the NW sub-cluster of Serpens can be reproduced only if there is a pre-existing marginally gravitationally unstable region at the time the collision occurs. Conclusions. This work supports the interpretation that a collision between two clouds may have been the trigger of the most recent burst of star formation in Serpens. It not only explains the complicated velocity structure seen in the region, but also the temperature differences between the north (in “isolated” collapse) and the south (resulting from the shock between the clouds). In addition it provides an explanation for the sources in the south having a larger spread in age than those in the north.
机译:上下文。星际介质(ISM)的复杂性使得不可能在所有分子云中以相同的方式引发恒星形成。虽然有些云似乎自行崩溃,但其他云可能是由外部事件触发的,例如形成重力不稳定的增强密度层的云/流碰撞。目的正如先前的工作所建议的那样,这项工作将云-云碰撞测试为塞尔彭斯主星团中恒星形成的触发机制。方法。进行了两个圆柱云之间碰撞的一组平滑粒子流体动力学(SPH)模拟,并将其与Serpens主星团的(亚)毫米观测值进行了比较。结果。发现了一种配置,该配置可重现Serpens的许多观察到的特征,包括特殊速度场的一些主要特征。在整个模型中,速度随位置的变化与所观察到的相似,并且建模云中的柱密度和质量与SE子簇的测量值一致。此外,我们的结果还表明,与观察到的相似,不对称碰撞为垂直于主结构的低密度长丝的复制提供了成分。在这种情况下,只有在发生碰撞时存在预先存在的边缘重力不稳定区域的情况下,才能复制Serpens NW子群集的形成。结论。这项工作支持这样一种解释,即两朵云之间的碰撞可能是塞尔彭斯最近恒星形成爆发的触发因素。它不仅解释了该地区看到的复杂的速度结构,而且解释了北(在“孤立的”坍塌中)和南(由于云之间的冲击所致)之间的温差。另外,它提供了一个解释,说明南部的来源比北部的来源年龄分布更大。

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