论文标题

Alma揭示的Do Tauri的圆环流出

A ringed pole-on outflow from DO Tauri revealed by ALMA

论文作者

López, M. Fernández, Zapata, L. A., Rodríguez, L. F., Vazzano, M. M., Guzmán, A. E., López, R.

论文摘要

我们提出了新的Alma Band 6观测值,包括CO(2-1)线和1.3毫米连续的发射。 ALMA CO分子数据显示,在不同的径向速度下,三个不同的环。这些环的半径约为220 au和800 au。我们使单独的符合环与戒指的拟合,并注意他们的中心与Do Tauri及其光学高速射流对齐。此外,我们注意到这些结构的速度随着与年轻恒星的分离而增加。我们讨论了以下假设下的数据:环代表了三个流出的壳的速度,这些壳可能由大角度的风驱动,从而沿着靠近视线的方向拖动环境材料(i = 19°)。我们估计每个单个流出外壳的动力学年龄,质量,动量和能量以及整个流出的壳体的动力学。结果与II类资源流出中发现的结果一致。我们对喷气/风力发射区域的大小进行了粗略的估计,该区域的规模需要小于15 au。我们报告了Do Tauri的磁盘连续发射的物理特性(几乎面对面,并且在南北方向上有一个预计的主要轴)及其速度梯度方向(南北),这表明1-2 MSUN Central Star的磁盘旋转。最后,我们显示了光射流的HST [SII]图像,并报告了其在天空平面中的方向的测量。

We present new ALMA Band 6 observations including the CO(2-1) line and 1.3 mm continuum emission from the surroundings of the young stellar object DO Tauri. The ALMA CO molecular data show three different series of rings at different radial velocities. These rings have radii around 220 au and 800 au. We make individual fits to the rings and note that their centers are aligned with DO Tauri and its optical high-velocity jet. In addition, we notice that the velocity of these structures increases with the separation from the young star. We discuss the data under the hypothesis that the rings represent velocity cuts through three outflowing shells that are possibly driven by a wide-angle wind, dragging the environment material along a direction close to the line of sight (i=19°). We estimate the dynamical ages, the mass, the momentum and the energy of each individual outflow shell and those of the whole outflow. The results are in agreement with those found in outflows from Class II sources. We make a rough estimate for the size of the jet/wind launching region, which needs to be of <15 au. We report the physical characteristics of DO Tauri's disk continuum emission (almost face-on and with a projected major axis in the north-south direction) and its velocity gradient orientation (north-south), indicative of disk rotation for a 1-2 Msun central star. Finally we show an HST [SII] image of the optical jet and report a measurement of its orientation in the plane of the sky.

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