论文标题
用准确的快速射流塑造渐近巨型分支恒星W43A的信封
Shaping the envelope of the asymptotic giant branch star W43A with a collimated fast jet
论文作者
论文摘要
恒星进化研究中的主要难题之一是双极和多极行星星云的形成过程。越来越多的共识是,准确的喷气机在缓慢扩张的(10--20〜km〜s $^{ - 1} $)中产生腔腔,以先前的进化阶段弹出,从而导致观察到的形态。然而,喷射的发射及其与偶色材料相互作用以创造出不对称形态的方式仍然鲜为人知。在这里,我们首次提出了从渐近巨型分支恒星W43A发射的,该明星W43A追踪了整个喷气流,从其驾驶恒星系统的附近到塑造了室内包膜的区域。我们发现该喷气机的发射速度为175〜 km〜s $^{ - 1} $,并且速度达到了130〜km〜s $^{ - 1} $,因为它与杂物材料相互作用。连续发射揭示了一个双极壳,中央中有一个紧凑的明亮点,该壳指出了射流源的位置。射流和双极外壳的运动学年龄相等,$τ$$ \ sim $ 60〜年,表明它们是同时创建的,可能是通过常见的基础机制,并且在很短的时间内。这些结果为理论模型提供了关键的初始条件,旨在解释在低和中间质量恒星的折叠信封中的双相形态。
One of the major puzzles in the study of stellar evolution is the formation process of bipolar and multi-polar planetary nebulae. There is growing consensus that collimated jets create cavities with dense walls in the slowly-expanding (10--20 ~km~s$^{-1}$) envelope ejected in previous evolutionary phases, leading to the observed morphologies. However, the launching of the jet and the way it interacts with the circumstellar material to create such asymmetric morphologies have remained poorly known. Here we present for the first time CO emission from the asymptotic giant branch star W43A that traces the whole stream of a jet, from the vicinity of its driving stellar system out to the regions where it shapes the circumstellar envelope. We found that the jet has a launch velocity of 175~km~s$^{-1}$ and decelerates to a velocity of 130~km~s$^{-1}$ as it interacts with circumstellar material. The continuum emission reveals a bipolar shell with a compact bright dot in the centre that pinpoints the location of the driving source of the jet. The kinematical ages of the jet and the bipolar shell are equal, $τ$$\sim$60~years, indicating that they were created simultaneously, probably by a common underlying mechanism, and in an extremely short time. These results provide key initial conditions for the theoretical models that aim to explain the formation of bipolar morphologies in the circumstellar envelopes of low and intermediate mass stars.