论文标题
Compton Thin Seyfert 2 Galaxy NGC 4388 Chandra解决的KPC量表Fe K $α$排放
The kpc Scale Fe K$α$ Emission in the Compton Thin Seyfert 2 Galaxy NGC 4388 resolved by Chandra
论文作者
论文摘要
我们介绍了Seyfert 2 Galaxy NGC 4388的Chandra成像和光谱观测。kPC量表周围核周围的三个延伸X射线结构进行了很好的成像,从而可以进行深入的空间解决研究。扩展的硬连续体和Fe k $α$线的形态都相似,这与环境相一致,即来自核的电离发射由过环冷气体重新处理,从而导致反射连续性较弱,并且相关的中性fe k $α$线。这在其他Compton厚的活性银河核(AGN)中已经可以看到,但是NGC 4388是一种罕见的柱密度的情况之一($ n _ {\ rm H} <1.25 \ 1.25 \ times 10^{24} $ cm $ cm $^{ - 2} $)。在核和扩展区域发现了Fe K $α$发射线的等效宽度的显着差异,这可以归因于不同的柱密度或相对于视线的散射角,而不是铁丰度的变化。东北和西扩展结构与HST $ V-H $地图中的银河磁盘和尘埃车道对齐,位于分子气体分布的峰值。形态意味着KPC尺度无线电流出可能已压缩了星际气体,并产生了作为反射器来增强线发射的反射器的团块。使用[OIV]发射作为AGN固有亮度的代理,我们发现两种扩展的Fe K $α$发射和反射连续性都与[OIV]的亮度线性相关,表明AGN和扩展发射之间的连接。
We present Chandra imaging and spectral observations of Seyfert 2 galaxy NGC 4388. Three extended X-ray structures around the nucleus on kpc scale are well imaged, allowing an in-depth spatially resolved study. Both the extended hard continuum and the Fe K$α$ line show similar morphology, consistent with a scenario where the ionizing emission from nucleus is reprocessed by circumnuclear cold gas, resulting in a weak reflection continuum and an associated neutral Fe K$α$ line. This has been seen in other Compton thick active galactic nuclei (AGN), but NGC 4388 is one of the rare cases with a lower column density ($N_{\rm H} < 1.25\times 10^{24}$ cm$^{-2}$) along the line of sight. Significant differences in equivalent width of the Fe K$α$ emission line are found for the nuclear and extended regions, which could be ascribed to different column densities or scattering angles with respect to the line of sight, rather than variations in iron abundances. The north-east and west extended structures are aligned with the galactic disk and dust lane in the HST $V-H$ map, and located at the peak of molecular gas distribution. The morphology implies that the kpc-scale radio outflow may have compressed the interstellar gas and produced clumps working as the reflector to enhance line emission. Using [OIV] emission as a proxy of the AGN intrinsic luminosity, we find that both of the extended Fe K$α$ emission and reflection continuum are linearly correlated with the [OIV] luminosity, indicating a connection between the AGN and the extended emission.