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Detection of quasars in the time domain

机译:检测时域中的Quasars

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The time domain is the emerging forefront of astronomical research with new facilities and instruments providing unprecedented amounts of data on the temporal behavior of astrophysical populations. Dealing with the size and complexity of this requires new techniques and methodologies. Quasars are an ideal work set for developing and applying these: they vary in a detectable but not easily quantifiable manner whose physical origins are poorly understood. In this paper, we will review how quasars are identified by their variability and how these techniques can be improved, what physical insights into their variability can be gained from studying extreme examples of variability, and what approaches can be taken to increase the number of quasars known. These will demonstrate how astroinformatics is essential to discovering and understanding this important population.
机译:时域是天文学研究的新兴前沿,新的设施和仪器提供了关于天体物理群体的时间行为的前所未有的数据。处理这的规模和复杂性需要新的技术和方法。 Quasars是一个理想的工作,用于开发和应用这些:它们在可检测的但不容易量化的方式中变化,其物理起源很难理解。在本文中,我们将审查以Quasars的可变性和这些技术如何改进标准条件,如何从研究可变性的极端示例来获得其变异性的物理见解,以及可以采取哪些方法来增加Quasars的数量已知。这些将展示浅剂系数如何对发现和理解这一重要人群是至关重要的。

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