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首页> 外文期刊>The Astrophysical journal >Hubble Space Telescope Observations of the Gravitationally Lensed Cloverleaf Broad Absorption Line QSO H1413+1143: Imaging Polarimetry and Evidence for Microlensing of a Scattering Region*
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Hubble Space Telescope Observations of the Gravitationally Lensed Cloverleaf Broad Absorption Line QSO H1413+1143: Imaging Polarimetry and Evidence for Microlensing of a Scattering Region*

机译:重力透镜的苜蓿叶形的阔叶吸收线QSO H1413 + 1143的哈勃太空望远镜观察:散射区域微透镜的成像偏振法和证据*

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摘要

We report the results of Hubble Space Telescope Wide Field and Planetary Camera 2 broadband F555W and F702W photometric and F555W polarimetric observations of the "Cloverleaf" QSO H1413+1143. This is a four-component gravitationally-lensed broad absorption line (BAL) QSO. Observations were obtained at two epochs in 1999 March and 1999 June separated by ≈100 days. The observations were photometrically and polarimetrically calibrated using the standard "pipeline" calibration procedures implemented at the Space Telescope Science Institute. The goal of our program was to detect any relative changes among the components and between the two epochs. Over this time baseline we detected an ≈0.07 mag dimming in component D of the lensed image, which we interpret as evidence for microlensing. In 1999 March we find significant evidence for a difference in the relative linear polarization of component D in comparison to the other three components; in 1999 June the combined polarization of the Cloverleaf components was lower. In 1999 March the apparently microlensed component D has a rotated polarization position angle and a somewhat higher degree of polarization than the other three components. We suggest that this difference in polarization is due to microlensing magnification of part of a scatter-light (i.e., polarized) continuum-producing region. The results indicate that in the Cloverleaf the size scale of the polarized scattered-light region exceeds ≈1016 cm but lies interior to the region producing the broad emission lines (1018 cm).
机译:我们报告了“三叶草” QSO H1413 + 1143的哈勃太空望远镜广角和行星相机2宽带F555W和F702W光度和F555W极化观测的结果。这是四分量重力透镜广吸收线(BAL)QSO。在1999年3月和1999年6月的两个时期获得了大约100天的间隔。使用太空望远镜科学研究所实施的标准“管道”校准程序对观测值进行了光度和偏振校准。我们程序的目标是检测组件之间以及两个时期之间的任何相对变化。在这段时间内,我们在镜头图像的分量D中检测到≈0.07的磁暗,我们将其解释为微镜头的证据。在1999年3月,我们发现了重要的证据表明,与其他三个分量相比,分量D的相对线性极化有所不同。在1999年6月,苜蓿叶形立交叶的组合极化较低。在1999年3月,与其他三个分量相比,表面上微透镜的分量D具有旋转的偏振位置角和更高的偏振度。我们建议偏振的这种差异是由于散射光(即偏振)连续体产生区域的一部分的微透镜放大率引起的。结果表明,在苜蓿叶形苜蓿中,偏振散射光区域的尺寸范围超过了≈1016cm,但位于产生宽发射线(<1018 cm)的区域的内部。

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