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Observing the Seyfert 2 nucleus of NGC 1068 with the VLT Interferometer

机译:用VLT干涉仪观测NGC 1068的Seyfert 2核

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Dusty tori have been suggested to play a crucial role in determining the physical characteristics of active galactic nuclei (AGN), but investigation of their properties has stalled for lack of high resolution mid-IR imaging. Recently, a long-awaited breakthrough in this field was achieved: NGC 1068, a nearby AGN, was the first extra-galactic object to be observed with a mid-IR interferometer, thereby obtaining the needed angular resolution to study the alleged torus. The instrument used was MIDI mounted on the ESO's VLT interferometer. The resulting 8 - 13 μm interferometric spectra indicated the presence of a thick (3x4 parsec) configuration of warm dust surrounding a hot ~ 1 pc component, marginally elongated in the direction perpendicular to the main orientation of the warm component. The structure of the 10 micron "silicate" absorption feature hinted at the presence of non-typical dust. In this proceeding, first the field of AGN research is briefly reviewed, with an emphasis on models of dusty tori. Second, the general properties of the key object NGC 1068 are discussed. Third, the MIDI data set is presented together with a first attempt to interpret this data in the context of tori models. Fourth, preliminary MIDI interferometric spectra of the nucleus of the nearby starbursting galaxy Circinus are presented. The apparent observed absence of both a hot component as well as a sharp absorption feature suggest that we view the torus more edge-on than is the case for NGC 1068. Finally, we briefly discuss the prospects of ESA's Darwin mission for observing nearby and distant AGN. The required capabilities for Darwin's first goal - the search for and subsequent characterization of earth-like planets orbiting nearby stars - are such that for its second goal - high resolution astrophysical imaging - the sensitivity will be similar to JWST and the angular resolution 1-2 orders better. This will allow detailed mapping of tori of low luminosity AGN such as NGC 1068 up to redshifts of 1 -2 and more luminous AGN up to redshift of 10 and beyond.
机译:已建议尘土飞扬的花托在决定活性银河核(AGN)的物理特征中起关键作用,但由于缺乏高分辨率的中红外成像,对其性能的研究陷入了停顿。最近,在该领域已实现了期待已久的突破:附近的AGN NGC 1068是使用中红外干涉仪观察到的第一个银河系外物体,从而获得了研究所谓环面的必要角分辨率。所使用的乐器是MIDI安装在ESO的VLT干涉仪上的。所得的8-13μm干涉光谱表明,存在一个厚的(3x4秒差距)配置的热尘,围绕着一个热的〜1 pc组件,在垂直于该暖组件主要方向的方向上略有拉长。 10微米“硅酸盐”吸收特征的结构暗示存在非典型粉尘。在此过程中,首先简要回顾了AGN研究领域,重点放在了尘土飞扬的花托模型上。其次,讨论关键对象NGC 1068的一般属性。第三,将MIDI数据集与首次尝试在tori模型的上下文中解释此数据的过程一起显示。第四,介绍了附近爆发星系圆环的核的MIDI初步干涉光谱。观察到的明显缺乏热成分和尖锐的吸收特征表明,我们认为圆环比NGC 1068的边缘更边缘。最后,我们简要讨论了ESA的达尔文任务观察附近和远处的前景AGN。达尔文的第一个目标-搜寻并随后表征围绕附近恒星运行的类行星的行星-的第二个目标-高分辨率天体物理成像-灵敏度将与JWST和角分辨率1-2相似订单更好。这将允许低亮度AGN(例如NGC 1068)的红托详细映射,直到1 -2的红移,以及更多的AGN的发光,直到10或更高的红移。

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