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首页> 外文期刊>The Astrophysical journal >X-RAY AND OPTICAL FLUX RATIO ANOMALIES IN QUADRUPLY LENSED QUASARS. I. ZOOMING IN ON QUASAR EMISSION REGIONS
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X-RAY AND OPTICAL FLUX RATIO ANOMALIES IN QUADRUPLY LENSED QUASARS. I. ZOOMING IN ON QUASAR EMISSION REGIONS

机译:四倍透镜拟态中的X射线和光学通量比异常。 I.放大准辐射区

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X-ray and optical observations of quadruply lensed quasars can provide a microarcsecond probe of the lensed quasar, corresponding to scale sizes of~10~2-10~4 gravitational radii of the central black hole. This high angular resolution is achieved by taking advantage of microlensing by stars in the lensing galaxy. In this paper we use X-ray observations of 10 lensed quasars recorded with the Chandra X-Ray Observatory as well as corresponding optical data obtained with either the Hubble Space Telescope or ground-based optical telescopes. These are analyzed in a systematic and uniform way with emphasis on the flux ratio anomalies that are found relative to the predictions of smooth lens models. A comparison of the flux ratio anomalies between the X-ray and optical bands allows us to conclude that the optical emission regions of the lensed quasars are typically larger than expected from basic thin-disk models by factors of ~3-30.
机译:四透镜类星体的X射线和光学观察可以提供透镜类星体的微弧探针,对应于中心黑洞的引力半径〜10〜2-10〜4的尺度。这种高角度分辨率是通过利用透镜星系中恒星的微透镜来实现的。在本文中,我们使用由钱德拉X射线天文台记录的10个类星体的X射线观察以及通过哈勃太空望远镜或地基光学望远镜获得的相应光学数据。将以系统,统一的方式分析这些现象,重点是相对于平滑透镜模型的预测发现的光通量比异常。通过比较X射线和光学带之间的通量比异常,可以得出结论,透镜类星体的光发射区域通常比基本薄盘模型的预期大3〜30倍。

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