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首页> 外文期刊>The Astrophysical journal >IMAGING AN EVENT HORIZON: MITIGATION OF SOURCE VARIABILITY OF SAGITTARIUS A*
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IMAGING AN EVENT HORIZON: MITIGATION OF SOURCE VARIABILITY OF SAGITTARIUS A*

机译:成像事件地平线:缓解射手座A *的源变异

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The black hole in the center of the Galaxy, associated with the compact source Sagittarius A* (Sgr A*), is predicted to cast a shadow upon the emission of the surrounding plasma flow, which encodes the influence of general relativity (GR) in the strong-field regime. The Event Horizon Telescope (EHT) is a Very Long Baseline Interferometry (VLBI) network with a goal of imaging nearby supermassive black holes (in particular Sgr A* and M87) with angular resolution sufficient to observe strong gravity effects near the event horizon. General relativistic magnetohydrodynamic (GRMHD) simulations show that radio emission from Sgr A* exhibits variability on timescales of minutes, much shorter than the duration of a typical VLBI imaging experiment, which usually takes several hours. A changing source structure during the observations, however, violates one of the basic assumptions needed for aperture synthesis in radio interferometry imaging to work. By simulating realistic EHT observations of a model movie of Sgr A*, we demonstrate that an image of the average quiescent emission, featuring the characteristic black hole shadow and photon ring predicted by GR, can nonetheless be obtained by observing over multiple days and subsequent processing of the visibilities (scaling, averaging, and smoothing) before imaging. Moreover, it is shown that this procedure can be combined with an existing method to mitigate the effects of interstellar scattering. Taken together, these techniques allow the black hole shadow in the Galactic center to be recovered on the reconstructed image.
机译:预计银河中心的黑洞与紧凑型源射手座A *(Sgr A *)相关联,在发射周围等离子体流时会产生阴影,从而编码了广义相对论(GR)的影响。强场政权。事件地平线望远镜(EHT)是一个超长基线干涉测量(VLBI)网络,其目标是对附近的超大质量黑洞(特别是Sgr A *和M87)进行成像,其角分辨率足以观察到事件地平线附近的强重力效应。广义相对论磁流体动力学(GRMHD)模拟表明,Sgr A *的无线电发射在几分钟的时标上表现出可变性,比典型的VLBI成像实验的持续时间短得多,后者通常需要几个小时。但是,在观察期间改变源结构会违反使无线电干涉成像中的孔径合成起作用所需的基本假设之一。通过对Sgr A *模型电影的真实EHT观察进行模拟,我们证明通过观察多天并进行后续处理,仍可以获得具有GR预测的特征性黑洞阴影和光子环特征的平均静态发射图像。成像之前的可见性(缩放,平均和平滑)。而且,表明该过程可以与现有方法结合以减轻星际散射的影响。综上所述,这些技术允许在重建图像上恢复银河系中心的黑洞阴影。

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