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The different origins of high- and low-ionization broad emission lines revealed by gravitational microlensing in the Einstein cross

机译:爱因斯坦十字架上的引力微透镜揭示了高电离和低电离宽发射线的不同起源

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摘要

We investigate the kinematics and ionization structure of the broad emission line region of the gravitationally lensed quasar QSO2237+0305 (the Einstein cross) using differential microlensing in the high- and low-ionization broad emission lines. We combine visible and near-infrared spectra of the four images of the lensed quasar and detect a large-amplitude microlensing effect distorting the high-ionization CIV and low-ionization Hα line profiles in image A. While microlensing only magnifies the red wing of the Balmer line, it symmetrically magnifies the wings of the CIV emission line. Given that the same microlensing pattern magnifies both the high- and low-ionization broad emission line regions, these dissimilar distortions of the line profiles suggest that the high- and low-ionization regions are governed by different kinematics. Since this quasar is likely viewed at intermediate inclination, we argue that the differential magnification of the blue and red wings of Hα favors a flattened, virialized, low-ionization region whereas the symmetric microlensing effect measured in CIV can be reproduced by an emission line formed in a polar wind, without the need of fine-tuned caustic configurations.
机译:我们使用高电离和低电离宽发射线中的微分微透镜研究了重力透镜类星体QSO2237 + 0305(爱因斯坦十字)的宽发射线区域的运动学和电离结构。我们结合了透镜类星体的四个图像的可见光谱和近红外光谱,并检测到大振幅的微透镜效应,扭曲了图像A中的高电离CIV和低电离Hα线轮廓。而微透镜仅放大了红翼Balmer线,对称地放大了CIV发射线的机翼。假定相同的微透镜图案会同时放大高电离和低电离的宽发射线区域,那么这些线轮廓的不同失真表明高电离和低电离的区域受不同的运动学控制。由于该类星体很可能是在中间倾斜角度观察​​的,因此我们认为Hα的蓝色和红色机翼的放大倍率有利于平坦的,病毒化的,低电离区域,而CIV中测得的对称微透镜效果可以通过形成的发射线来再现。在极风中,无需微调的苛性碱配置。

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