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Infrared Interferometry and AGNs: Parsec-scale Disks and Dusty Outflows

机译:红外干涉仪和AGN:视差级磁盘和多灰尘的流出

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The "torus" is the central element of the most popular theory unifying various classes of AGNs, but it is usually described as "putative" because it has not been imaged yet. Since it is too small to be resolved with single-dish telescopes, one can only make indirect assumptions about its structure using models. Using infrared interferometry, however, we were able to resolve the circum-nuclear dust distributions for several nearby AGNs and achieved constraints on some further two dozen sources. We discovered circum-nuclear dust on parsec scales in all sources and, in two nearby sources, were able to dissect this dust into two distinct components. The compact component, a very thin disk, appears to be connected to the maser disk and the extended one, which is responsible for most of the mid-IR flux, is oriented perpendicularly to the circum-nuclear gas disks. What may come as a surprise when having in mind the standard unification cartoon actually connects well to observations on larger scales. Optically thin dust in the polar region, perhaps driven by a disk wind, could solve both the scale height problem of the torus and explain the missing anisotropy in the mid-IR - X-ray relation.
机译:“ torus”是统一各种AGNs的最流行理论的中心元素,但是由于尚未被成像,因此通常被称为“假定的”。由于它太小而无法用单碟望远镜解决,因此只能使用模型对其结构进行间接假设。但是,使用红外干涉测量法,我们能够解决几个附近AGN的环核尘埃分布,并在另外两个十几个源上实现了约束。我们在所有来源中都发现了秒差距尺度的环形核尘埃,并且在附近的两个来源中,能够将这些尘埃分解成两个不同的成分。紧凑的组件,非常薄的磁盘,似乎已连接到maser磁盘上,而扩展的磁盘则负责大部分中红外通量,其方向垂直于外接核气磁盘。当想到标准统一卡通实际上与较大比例的观测结果很好地联系在一起时,可能会感到惊讶。极性区域中的光学稀薄尘埃,可能是由盘状风驱动的,既可以解决圆环的水垢高度问题,又可以解释中红外-X射线关系中缺失的各向异性。

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