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类星体吸积盘在红外波段呈现出的特征蓝色光谱被发现。

The characteristic blue spectra of accretion disks in quasars as uncovered in the infrared.

作者信息

Kishimoto Makoto, Antonucci Robert, Blaes Omer, Lawrence Andy, Boisson Catherine, Albrecht Marcus, Leipski Christian

机构信息

Max-Planck-Institut für Radioastronomie, Auf dem Hügel 69, 53121 Bonn, Germany.

出版信息

Nature. 2008 Jul 24;454(7203):492-4. doi: 10.1038/nature07114.

Abstract

Quasars are thought to be powered by supermassive black holes accreting surrounding gas. Central to this picture is a putative accretion disk which is believed to be the source of the majority of the radiative output. It is well known, however, that the most extensively studied disk model-an optically thick disk which is heated locally by the dissipation of gravitational binding energy-is apparently contradicted by observations in a few major respects. In particular, the model predicts a specific blue spectral shape asymptotically from the visible to the near-infrared, but this is not generally seen in the visible wavelength region where the disk spectrum is observable. A crucial difficulty has been that, towards the infrared, the disk spectrum starts to be hidden under strong, hot dust emission from much larger but hitherto unresolved scales, and thus has essentially been impossible to observe. Here we report observations of polarized light interior to the dust-emitting region that enable us to uncover this near-infrared disk spectrum in several quasars. The revealed spectra show that the near-infrared disk spectrum is indeed as blue as predicted. This indicates that, at least for the outer near-infrared-emitting radii, the standard picture of the locally heated disk is approximately correct.

摘要

类星体被认为是由吸积周围气体的超大质量黑洞提供能量的。这一图景的核心是一个假定的吸积盘,它被认为是大部分辐射输出的来源。然而,众所周知,最广泛研究的盘模型——一个光学厚盘,由引力束缚能的耗散局部加热——在几个主要方面显然与观测结果相矛盾。特别是,该模型预测了从可见光到近红外的特定蓝色光谱形状,但在可观测到盘光谱的可见光波长区域,这一形状通常并未被观测到。一个关键的困难在于,在红外波段,盘光谱开始被来自更大但迄今尚未分辨的尺度上的强烈热尘埃发射所掩盖,因此基本上无法观测到。在这里,我们报告了对尘埃发射区域内部偏振光的观测,这使我们能够在几个类星体中揭示这种近红外盘光谱。所揭示的光谱表明,近红外盘光谱确实如预测的那样呈蓝色。这表明,至少对于发射近红外光的外半径而言,局部加热盘的标准图景大致是正确的。

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