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Kinematic and Excitation Structure of the NGC 1068 Narrow-Line Region

机译:NGC 1068窄线区域的运动学和激励结构

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We investigated the kinematic and excitation structure of the NGC 1068 narrow-line region (NLR). We obtained profiles of several emission lines ([0 III] λ 5007, Hβ, [0 I] λ 6300, and [Fe VIII] λ 6087) at high-velocity resolution (R ~ 7500-11000), and confirmed that they showed different profiles. These profiles are useful for understanding the NLR structure, since they cover a wide ionization-potential range. By comparing the results with a photoionization model, we found that: (1) blueshifted components at the center are very dense, (2) those in the northeast region have slightly lower densities than those in the center, and (3) the ionization parameters of the blueshifted components increase with increasing velocity with respect to the systemic velocity. We investigated the NLR structure in NGC 1068 based on these results. We show that both the observed velocity dependence of the ionization parameter and the gradually increasing velocity field can be reproduced by varying the ionizing continuum attenuation, assuming a hollowed biconical geometry and varying the column densities of outflowing clouds.
机译:我们研究了NGC 1068窄线区域(NLR)的运动学和激发结构。我们以高速分辨率(R〜7500-11000)获得了几种发射谱线([0 III]λ5007,Hβ,[0 I]λ6300和[Fe VIII]λ6087)的分布图,并确认它们显示了不同的配置文件。这些分布图可用于了解NLR结构,因为它们涵盖了很大的电离势范围。通过将结果与光电离模型进行比较,我们发现:(1)中心的蓝移成分非常密集;(2)东北区域的成分比中心的浓度略低;(3)电离参数相对于系统速度,蓝移分量的比率随速度增加而增加。基于这些结果,我们研究了NGC 1068中的NLR结构。我们表明,假设中空的双锥几何形状和变化的流出云柱密度,通过改变电离连续谱衰减,可以再现观察到的电离参数的速度依赖性和逐渐增加的速度场。

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