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Multi-wavelength study of the gravitational lens system RXS J1131-1231 - III. Long slit spectroscopy: micro-lensing probes the QSO structure

机译:引力透镜系统RXS J1131-1231-III的多波长研究。长缝光谱:微透镜探测QSO结构

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摘要

Aims. We discuss and characterize micro-lensing among the 3 brightest lensed images (A-B-C) of the gravitational lens system RXS J1131-1231 (a quadruply imaged AGN) by means of long slit optical and NIR spectroscopy. Qualitative constraints on the size of different emission regions are derived. We also perform a spectroscopic study of two field galaxies located within 1.6 arcmin radius from the lens. Methods. We decompose the spectra into their individual emission components using a multi-component fitting approach. A complementary decomposition of the spectra enables us to isolate the macro-lensed fraction of the spectra independently of any spectral modelling. Results. 1. The data support micro-lensing de-amplification of images A and C. Not only is the continuum emission microlensed in those images but also a fraction of the Broad Line emitting Region (BLR). 2. Micro-lensing of a very broad component of Mg II emission line suggests that the corresponding emission occurs in a region more compact than the other components of the emission line. 3. We find evidence that a large fraction of the Fe II emission arises in the outer parts of the BLR. We also find a very compact emitting region in the ranges 3080-3540 angstrom and 4630-4800 angstrom that is likely associated with Fe II. 4. The [O III] narrow emission line regions are partly spatially resolved. This enables us to put a lower limit of similar to 110h(-1) pc on their intrinsic size. 5. Analysis of Mg II absorption found in the spectra indicates that the absorbing medium is intrinsic to the quasar, has a covering factor of 20%, and is constituted of small clouds homogeneously distributed in front of the continuum and BLRs. 6. Two neighbour galaxies are detected at redshifts z = 0.10 and z = 0.289. These galaxies are possible members of galaxy groups reported at those redshifts.
机译:目的我们通过长缝光学和近红外光谱技术讨论和表征了引力透镜系统RXS J1131-1231(四重成像AGN)的3个最明亮的透镜图像(A-B-C)中的微透镜。得出了对不同发射区域大小的定性约束。我们还对位于距透镜1.6 arcmin半径内的两个场星系进行了光谱研究。方法。我们使用多分量拟合方法将光谱分解为它们的各个发射分量。光谱的互补分解使我们能够独立于任何光谱建模而分离光谱的宏观镜头部分。结果。 1.数据支持图像A和C的微透镜去放大。不仅连续光发射在这些图像中微透镜化,而且还包括宽带发射区域(BLR)的一小部分。 2. Mg II发射谱线中很宽的成分的微透镜表明,相应的发射发生在比发射谱线其他成分更紧凑的区域。 3.我们发现有证据表明,大部分的Fe II排放物出现在BLR的外部。我们还发现了非常紧凑的发射区域,其范围可能与Fe II有关,范围在3080-3540埃和4630-4800埃之间。 4. [O III]窄发射线区域在空间上得到部分分解。这使我们能够对其内在尺寸设置类似于110h(-1)pc的下限。 5.光谱中Mg II吸收的分析表明,吸收介质是类星体固有的,覆盖因子为20%,由均匀分布在连续体和BLR前面的小云组成。 6.在红移z = 0.10和z = 0.289处检测到两个相邻星系。这些星系可能是这些红移报告的星系组的可能成员。

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