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SHOCK CHEMISTRY IN THE YOUNG BIPOLAR OUTFLOW L1157

机译:青年双极流出时的化学反应L1157

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摘要

We present the first results from a recent survey of molecular lines in L1157, a highly collimated bipolar molecular outflow driven by a class 0 protostar. These observations are used to study the chemical alterations produced by a violent, highly collimated outflow. Different molecular lines are observed to trace different components of the gas. Some molecules (C_3H_2, N_2H~+, H~(13)CO~+, DCO~+) are abundant in the quiescent medium but are not observed at high velocities. Lines from these molecules are the best tracers of the concentration of dense gas around the protostar. In addition, we find that some otherwise rare molecules (e.g., SiO, CH_3OH, H_2CO, HCN, CN, SO, and SO_2) are enhanced by at least an order of magnitude at the shocked region. Our observations provide estimates of the enhancement factors for such species. Strong gradients in the chemical composition are observed along the outflow blue lobe, which could be due to the evolution in time of the chemical processes. We briefly discuss the chemistry of the most important molecules, devoting special attention to the species that are thought to be abundant in interstellar ice mantles.
机译:我们展示了L1157分子行的最新调查的第一个结果,L1157是由0级原恒星驱动的高度准直的双极分子流出。这些观察结果用于研究剧烈高度准直的流出所产生的化学变化。观察到不同的分子线以追踪气体的不同成分。一些分子(C_3H_2,N_2H〜+,H〜(13)CO〜+,DCO〜+)在静态培养基中含量很高,但在高速下没有观察到。这些分子的线是原恒星周围浓密气体浓度的最佳示踪剂。此外,我们发现,一些其他稀有分子(例如SiO,CH_3OH,H_2CO,HCN,CN,SO和SO_2)在受激区域增强了至少一个数量级。我们的观察提供了此类物种增强因子的估计。沿流出的蓝色波瓣观察到化学成分的强梯度,这可能是由于化学过程的时间演变所致。我们简要讨论了最重要分子的化学过程,特别关注了星际冰幔中丰富的物种。

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