论文标题
NGC 1068的圆环中明显的反旋转:不对称风的影响
Apparent counter-rotation in the torus of NGC 1068: influence of an asymmetric wind
论文作者
论文摘要
最近的ALMA地图以及H $ _2 $ o的观察结果似乎暗示了NGC 1068的模糊圆环中存在反旋转的存在。我们建议解释这一现象,因为这是由于风的影响(被认为是辐射压力)的影响,以及您的效果。为了测试这个想法:1。我们对粒子之间的互惠力进行了$ n $的模拟(云); 2。我们将射线追踪算法与中央发动机的光束一起使用,以选择圆环喉咙中的云,这些云可能会受到积聚盘发射的直接影响; 3。我们使用半分析模型来模拟强迫喉咙中云对云层的不对称辐射压力(风)的影响。相对于圆环对称轴倾斜这种风的轴; 4。我们将圆环定向相对于观察者,并再次应用射线追踪算法。在此步骤中,梁从观察者到光学厚的云,使我们可以考虑云的相互掩饰。 5。在图片平面上投射后,我们对所得的云分布强加了一个网格,并找到每个细胞中云的平均速度,以模仿ALMA观察图。通过选择与NGC 1068相对应的参数,我们获得模型速度图,以模拟明显的反旋转的效果,并可以解释Alma的发现。
The recent ALMA maps together with observations of H$_2$O maser emission seem to suggest the presence of a counter-rotation in the obscuring torus of NGC 1068. We propose to explain this phenomenon as due to the influence of a wind, considered as radiation pressure, and the effects of torus orientation. In order to test this idea: 1. we make $N$-body simulation of a clumpy torus taking into account mutual forces between particles (clouds); 2. we apply ray-tracing algorithm with the beams from the central engine to choose the clouds in the torus throat that can be under direct influence of the accretion disk emission; 3. we use semi-analytical model to simulate the influence of the asymmetrical radiation pressure (wind) forced on the clouds in the torus throat. An axis of such a wind is tilted with respect to the torus symmetry axis; 4. we orient the torus relative to an observer and again apply ray-tracing algorithm. In this step the beams go from an observer to the optically thick clouds that allows us to take into account the mutual obscuration of clouds; 5. after projecting on the picture plane, we impose a grid on the resulting cloud distribution and find the mean velocity of clouds in each cells to mimic the ALMA observational maps. By choosing the parameters corresponding to NGC 1068 we obtain the model velocity maps that emulate the effect of an apparent counter-rotation and can explain the discovery made by ALMA.