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Spatially resolved near-infrared imaging of a gravitationally lensed quasar, APM 08279+5255, with adaptive optics on the Subaru Telescope

机译:斯巴鲁望远镜上带有自适应光学元件的重力透镜类星体的空间分辨近红外成像,APM 08279 + 5255

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We present a spatially resolved imaging analysis of a three-component gravitationally lensed quasar at z = 3.91, APM 08279+5255, in the L'- and M'-bands, and a narrow band centered at 3.05 μm using the 188-element adaptive optics system on the Subaru Telescope. The third, faintest quasar image, component C, has been clearly resolved in all of these bands for the first time. All of the three components are point sources in all three bands. No new component, neither a fourth quasar image nor a lens galaxy, was discovered. The observed bands correspond to the long-wavelength end of the optical power-law continuum of the source quasar in its rest frame, and are little contaminated by strong emission lines like Hα. The measured flux ratio of components C to B is shown to be constant in all of the observed bands, and its achromatic nature agrees well with preceding work done at short nearinfrared wavelengths one decade ago. On the other hand, the flux ratio of components A to B shows an increase from that of past measurements. This could be ascribed to a microlensing event.
机译:我们使用Z轴上的三元素引力透镜类星体,在L =和M'波段,z = 3.91,APM 08279 + 5255,以及一个以3.05μm为中心的窄波段,采用188要素自适应成像技术,进行了空间分辨成像分析斯巴鲁望远镜上的光学系统。第三个最微弱的类星体图像(分量C)首次在所有这些波段中得到了清晰分辨。所有这三个分量都是所有三个频带中的点源。没有发现新的成分,既没有第四类星体图像也没有发现透镜星系。观察到的波段对应于源类星体在其静止帧中的光功率定律连续体的长波长端,并且几乎没有受到像Hα这样的强发射线的污染。测得的组分C与B的通量比在所有观察到的波段中都是恒定的,并且其消色差性质与十年前在短近红外波长下所做的先前工作非常吻合。另一方面,组分A与组分B的通量比显示出比过去的测量值有所增加。这可以归因于微透镜事件。

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