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The Evolution of Outflow-Envelope Interactions in Low-Mass Protostars

机译:低质量原恒星中流出-包络相互作用的演化

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We present multiline and continuum observations of the circumstellar environment within 104 AU of a sample of protostars to investigate how the effects of outflows on their immediate environment change over time. 12CO (1-0) emission probes the high-velocity molecular outflows near the protostars and demonstrates that the outflow opening angle widens as the nascent star evolves. Maps of the 13CO (1-0) and HCO+ (1-0) outflow emission show that protostellar winds erode the circumstellar envelope through the entrainment of the outer envelope gas. The spatial and velocity distribution of the dense circumstellar envelope, as well as its mass, is traced by the C18O (1-0) emission and also displays evolutionary changes. We show that outflows are largely responsible for these changes and propose an empirical model for the evolution of outflow-envelope interactions. In addition, some of the outflows in our sample appear to affect the chemical composition of the surrounding environment, enhancing the HCO+ abundance. Overall, our results confirm that outflows play a major role in the star formation process through their strong physical and chemical impacts on the environments of the young protostars.
机译:我们对原恒星样本的104 AU之内的星际环境进行多线和连续观测,以调查流出对其直接环境的影响如何随时间变化。 12CO(1-0)发射探测了原恒星附近的高速分子流出,并证明了随着新生恒星的发展,流出开口角变宽。 13CO(1-0)和HCO +(1-0)流出物的排放图显示,原恒星风通过夹带外层壳层气体而侵蚀了星际层壳。 C18O(1-0)的发射可追踪密集的星际包络线的空间和速度分布及其质量,并显示进化变化。我们显示出流出是造成这些变化的主要因素,并提出了流出-包络相互作用演变的经验模型。此外,样本中的某些流出物似乎会影响周围环境的化学成分,从而增加HCO +的丰度。总体而言,我们的结果证实,外流通过对年轻原恒星环境的强烈物理和化学影响,在恒星形成过程中起着重要作用。

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