论文标题
SGR A*的喷射和流出的证据:连续和光谱线研究
Evidence for a jet and outflow from Sgr A*: a continuum and spectral line study
论文作者
论文摘要
我们使用ALMA和VLA的光谱和连续观测来研究SGR A*的环境。我们对SGR A的Sub-Arcsecond H30Alpha,H39Alpha,H52Alpha和H56Alpha线的发射*证实了最近发布的宽峰〜500 km/s〜频谱,向Sgr〜A*。我们还以0.2''之内的更高径向速度检测到-2500和4000 km/s的发射。然后,我们以多个频率在弧度到弧形的尺度上以多个频率呈现宽带无线电连续图。许多细长的连续结构平行于银河平面,从〜0.4''''延伸到10'。我们注意到,在1至1.4 GHz之间的低频中,从sgr a*发出的高度伸长结构,其中来自微螺旋的热发射会因光学深度效应而降低。相对于SGR A*,这种细长结构的位置角度和电离特征的运动感表明,从SGR A*出现的对称的,准直的射流,开头的角度约为30摄氏度,位置角度〜60摄氏度通过培养基,然后加速了大量的离子化气体到高速速率的显着分数。估计质量流速〜1.4x10^{ - 5}太阳质量/YR的射流垂直于SGR A*事件范围附近的积聚流的赤道平面,并沿银河平面运行。为了解释SGR A*附近的许多东西方功能,我们还考虑了流出组件的可能性,并从较大的半径上的积聚流中启动了更广角的流出组件。
We study the environment of Sgr A* using spectral and continuum observations with the ALMA and VLA. Our analysis of sub-arcsecond H30alpha, H39alpha, H52alpha and H56alpha line emission towards Sgr A* confirm the recently published broad peak ~500 km/s~spectrum toward Sgr~A*. We also detect emission at more extreme radial velocities peaking near -2500 and 4000 km/s, within 0.2''. We then present broad band radio continuum images at multiple frequencies on scales from arcseconds to arcminutes. A number of elongated continuum structures lie parallel to the Galactic plane, extending from ~0.4'' to 10'. We note a nonthermal elongated structure on an arcminute scale emanating from Sgr A* at low frequencies between 1 and 1.4 GHz where thermal emission from the mini-spiral is depressed by optical depth effects. The position angle of this elongated structure and the sense of motion of ionized features with respect to Sgr A* suggest a symmetric, collimated jet emerging from Sgr A* with an opening angle of ~30deg and a position angle of ~60deg punching through the medium before accelerating a significant fraction of the orbiting ionized gas to high velocities. The jet with estimated mass flow rate ~1.4x10^{-5} solar mass/yr emerges perpendicular to the equatorial plane of the accretion flow near the event horizon of Sgr A* and runs along the Galactic plane. To explain a number of east-west features near Sgr A*, we also consider the possibility of an outflow component with a wider-angle launched from the accretion flow at larger radii.