论文标题

仔细观察NGC 7314核区域:Seyfert核及其周围环境的多波长分析

A closer look at NGC 7314 nuclear region: a multiwavelength analysis of the Seyfert nucleus and its surroundings

论文作者

da Silva, Patrícia, Menezes, R. B., Díaz, Y., Rodríguez-Ardila, A., López-Navas, E., Arévalo, P., Hernández-García, L.

论文摘要

具有活性银河核(AGN)的星系的中央区域可能非常复杂,尤其是在高活性下,除了可变性外,还与各种现象相关,例如电离/激发机制。为了更好地了解这些对象,有必要进行详细的研究。出于这个原因,我们使用了来自Gemini多目标光谱仪的整体场单元获得的光学数据立方体,对附近Seyfert Galaxy NGC 7314的核区域进行了多波长度分析,以及Hubble Space望远镜图像,来自XMM-Newton和XMM-Newton和核谱图的Hubble Space望远镜图像,以及Hubble Space telescope图像,以及XMM-Newton和核能图像台的图像。 大批。目标是研究核和周环发射,AGN的排放和气体运动学。光谱显示了Seyfert核的发射,其在H $α$和H $β$发射线中具有较大的组件,表征了1型AGN,并具有富含冠状发射线的光谱。 [OIII] $λ$ 5007的空间形态表明,存在核西方的电离锥存在,与此同时,东锥似乎被灰尘遮盖了。还检测到了扩展的[FEVII] $λ$ 6087排放,这可能通过涉及光电离+冲击机制的情况来解释。 X射线分析表明,通量存在差异。但是,我们没有检测到沿视线沿线密度的任何变化。它的可变性可能是AGN积聚率变化的结果。

The central regions of galaxies harbouring active galactic nuclei (AGNs) can be quite complex, especially at high activity, presenting, besides variability, a variety of phenomena related, e.g. to ionization/excitation mechanisms. A detailed study is necessary in order to understand better those objects. For that reason, we performed a multiwavelength analysis of the nuclear region of the nearby Seyfert galaxy NGC 7314, using an optical data cube obtained with the Integral Field Unit from the Gemini Multi-Object Spectrograph, together with Hubble Space Telescope images, X-ray data from the XMM-Newton and the Nuclear Spectroscopic Telescope Array and radio data from Atacama Large Millimeter/Submillimeter Array. The goals were to study the nuclear and circumnuclear emission, the emission of the AGN and the gas kinematics. The optical spectrum shows the emission of a Seyfert nucleus, with broad components in the H$α$ and H$β$ emission lines, characterising a type 1 AGN, with a spectrum rich in coronal emission lines. The spatial morphology of the [OIII]$λ$5007 suggests the presence of an ionization cone, west of the nucleus, meanwhile the east cone seems to be obscured by dust. An extended [FeVII]$λ$6087 emission was also detected, which could be possibly explained by a scenario involving photoionization+shocks mechanisms. X-rays analyses showed that there are variations in the flux; however, we did not detect any variations in the column density along the line of sight. Its variability may be a consequence of changes in the AGN accretion rate.

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