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Spatially separated continuum sources revealed by microlensing in the gravitationally lensed broad absorption line quasar SDSS J081830.46+060138.0 ? ??

机译:通过在重力透镜宽吸收线中的微透镜中透露的空间分离的连续源J081830.46 + 060138.0 α? <相关对象对象型=“ Tablecds“source-id =”http://cdsarc.u-strasbg.fr/viz-bin/cat/j/aada/633/a101“source-id-type =”url“/> ??

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Gravitational microlensing is a powerful tool for probing the inner structure of distant quasars. In this context, we have obtained spectropolarimetric observations of the two images of the broad absorption line (BAL) quasar SDSS J081830.46+060138.0 (J0818+0601) at redshift z ???2.35. We first show that J0818+0601 is actually gravitationally lensed, and not a binary quasar. A strong absorption system detected at z ?=?1.0065?±?0.0002 is possibly due to the lensing galaxy. Microlensing is observed in one image and it magnifies the emission lines, the continuum, and the BALs differently. By disentangling the part of the spectrum that is microlensed from the part that is not microlensed, we unveil two sources of continuum that must be spatially separated: a compact one, which is microlensed, and an extended one, which is not microlensed and contributes to two thirds of the total continuum emission. J0818+0601 is the second BAL quasar in which an extended source of rest-frame ultraviolet continuum is found. We also find that the images are differently polarized, suggesting that the two continua might be differently polarized. Our analysis provides constraints on the BAL flow. In particular, we find that the outflow is seen with a nonzero onset velocity, and stratified according to ionization.
机译:引力微透镜是一种探测远处Quasars内部结构的强大工具。在这种情况下,我们已经获得了宽吸收线(BAL)Quasar SDSS J081830.46 + 060138.0(J0818 + 0601)的两个图像的光学探测器。我们首先表明J0818 + 0601实际上是重力镜头,而不是二元Quasar。在z?=α= 1.0065?±0.0002可能是由于镜头的星系。在一个图像中观察微溶剂,并以不同方式放大排放线,连续管和BAL。通过解开从没有微透镜的部分微透镜的光谱的部分,我们推出了必须在空间分离的两个连续源:一个紧凑的一个,它是微透明的,并且延伸的一个,并且延伸,这不是微透镜的并且有助于总连续排放的三分之二。 J0818 + 0601是第二个BAL Quasar,其中发现了静息紫外线连续素的扩展源。我们还发现图像有不同的极化,表明两个连续轴可能是不同的极化。我们的分析提供了对BAL流的约束。特别是,我们发现通过非零发作速度看到流出,并根据电离分层。

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