论文标题

NGC 4151的核结构:在NGC 1068的通用流出机制的道路上

The nuclear architecture of NGC 4151: on the path toward a universal outflow mechanism in light of NGC 1068

论文作者

May, D., Steiner, J. E., Menezes, R. B., Williams, D. R. A., Wang, J.

论文摘要

我们报告了活性银河核NGC 4151的近红外积分光谱观测,并带有来自NIFS-Gemini North望远镜的存档数据。我们选择了最好的观察结果($ \ lyssim $ 0.3 Arcsec),这些观测值与我们的图像处理技术方法相关,显示了具有与HST相当的空间分辨率的结构。根据NGC 1068的结果,在先前的工作中发现了NGC 4151的复杂流出,并且发现了非常相似的动态:低速度[Fe II]发射描绘了沙发液结构的发光壁,而高速气体气体则填充了其体积。从这一发现中,我们表明,正如先前认为的那样,喷气机与NLR之间的错位并不是投影效应。在这个星系中,第一次检测到分子流出,就像在NGC 1068中一样,分子和离子气相之间的过渡来自分子腔壁的碎片,进入暴露于中心源的电离气体的子弹。此外,暗示着在这里发现NGC 1068中看到的锥体之间相同的几何二分法,其中一侧被AGN破坏了腔,比另一侧更延伸。最后,发现了高速[Fe II]与[NE IX]的软X射线发射之间的新空间相关性,这是出乎意料的,鉴于它们的电离电位之间的差异。

We report near-infrared integral field spectroscopic observations of the active galactic nucleus NGC 4151 with archive data from the NIFS-Gemini North Telescope. We have selected best-seeing observations ($\lesssim$0.3 arcsec) that, allied to our methodology of image processing techniques, show structures with spatial resolution comparable to those of the HST. The intricate outflow of NGC 4151 is revisited in light of the results found for NGC 1068, in a previous work, and a very similar dynamic is found: the low-velocity [Fe II] emission depicts the glowing walls of an hourglass structure, while the high-velocity gas fills its volume. From this finding, we show that the misalignment between the jet and the NLR is not a projection effect, as previously thought. A molecular outflow is detected for the first time in this galaxy and, just like in NGC 1068, the transition between the molecular and the ionized gas phases comes from the fragmentation of molecular cavity walls into bullets of ionized gas exposed to the central source. Furthermore, it is suggestive that the same geometrical dichotomy between the cones seen in NGC 1068 is found here, with one side, where the cavity is disrupted by the AGN, being more extended than the other. Finally, a new spatial correlation between the high-velocity [Fe II] and the soft X-ray emission of [Ne IX] is found, which is unexpected given the difference between their ionization potentials.

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