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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >Blazar variability studies with the 1.3m Robotically Controlled Telescope and the automated 0.6m Bell Observatory telescope
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Blazar variability studies with the 1.3m Robotically Controlled Telescope and the automated 0.6m Bell Observatory telescope

机译:使用1.3m自动控制望远镜和自动0.6m贝尔天文台望远镜进行Blazar变异性研究

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摘要

One of the key programs on the 1.3m Robotically Controlled Telescope (RCT) located at Kitt Peak National Observatory and the 0.6m telescope at the Bell Observatory operated by Western Kentucky University is a study of the variability of the class of Active Galactic Nuclei (AGN) known as Blazars. Blazars are highly variable on timescales of minutes to decades and this variability is seen across the electromagnetic spectrum. In addition, they display a featureless spectrum, thus continuum variability provides the only diagnostic of these objects. Variability provides information on the size of the emission region responsible for the observed variations and when observations are obtained at multiple wavelengths, it can be used to discriminate between emission models. However, traditional ground based observations are limited in a variety of ways. We will discuss how an automated facility, with time dedicated to this astrophysically interesting problem, can overcome many of these limitations, and we show results from the Bell Observatory as well as some of the first results of Blazar observations from the RCT.
机译:由西肯塔基大学运营的位于基特峰国家天文台的1.3m机器人控制望远镜(RCT)和位于贝尔的天文台的0.6m望远镜的关键程序之一是研究有源银河核(AGN)类的变异性)称为Blazars。爆炸物在数分钟到数十年的时间尺度上变化很大,并且在电磁频谱中都可以看到这种变化。此外,它们显示出无特征的光谱,因此连续性可变性是对这些对象的唯一诊断。可变性提供了有关负责观察到的变化的发射区域的大小的信息,并且当在多个波长下获得观测值时,可以用来区分发射模型。但是,传统的地面观测受到多种方式的限制。我们将讨论一个专门用于解决天文学上令人关注的问题的自动化设施如何克服许多这些局限性,并展示贝尔天文台的结果以及RCT进行的布拉扎尔观测的一些最初结果。

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