论文标题
黑暗中的镜头:对22个钱德拉来源的贝叶斯分析,$ z \ gtrsim 6 $显示没有镜头的证据
Lensing in the Darkness: A Bayesian Analysis of 22 Chandra Sources at $z \gtrsim 6$ Shows No Evidence of Lensing
论文作者
论文摘要
到目前为止,已经发现了超过200美元的类星体,$ z> 6 $,只有一个显示出明显的重力镜头迹象。一些研究要求缺少镜头的高$ z $类星体,但它们的存在仍然令人怀疑。将大量的高$ z $类星体镜头镜头对固有的类星体光度函数(QLF)的形状产生重大影响。在这里,我们在$ z \ gtrsim 6 $上对镜头X射线检测的类星体进行了首次系统搜索,并采用贝叶斯分析以及代码Baymax来寻找可能逃脱视觉检查的多个图像的形态学证据。我们分析了Chandra X射线天文台成像的$ z> 5.8 $的22种类星体样本,发现没有统计学意义的多个图像。在具有光子计数$> 20 $的8个来源的子样本中,我们排除了具有分离$ r> 1''$和计数比率$ f> 0.4 $的多个图像,或者分离为$ 0。将这种非检测与理论模型的预测进行比较,这表明镜头的高镜头上限较高和低透镜的分数,将上限放在QLF的明亮斜率$β$上。仅使用带有8个来源的子样本,我们在高镜模型中获得了$β<3.38 $的限制。假设22个来源的完整样本中没有多个来源,我们分别在高和低镜头模型中获得$β<2.89 $和$β<3.53 $。这些约束强烈不利于文献中先前提出的陡峭QLF形状。
More than $200$ quasars have been detected so far at $z > 6$, with only one showing clear signs of strong gravitational lensing. Some studies call for a missing population of lensed high-$z$ quasars, but their existence is still in doubt. A large fraction of high-$z$ quasars being lensed would have a significant effect on the shape of the intrinsic quasar luminosity function (QLF). Here, we perform the first systematic search for lensed X-ray-detected quasars at $z \gtrsim 6$ employing a Bayesian analysis, with the code BAYMAX, to look for morphological evidence of multiple images that may escape a visual inspection. We analyzed a sample of 22 quasars at $z > 5.8$ imaged by the Chandra X-ray observatory and found none with statistically significant multiple images. In the sub-sample of the 8 sources with photon counts $>20$ we exclude multiple images with separations $r>1''$ and count ratios $f>0.4$, or with separations as small as $0.''7$ and $f>0.7$ at $95\%$ confidence level. Comparing this non-detection with predictions from theoretical models suggesting a high and a low lensed fraction, we placed upper limits on the bright-end slope, $β$, of the QLF. Using only the sub-sample with 8 sources, we obtain, in the high-lensing model, a limit $β< 3.38$. Assuming no multiple source is present in the full sample of 22 sources, we obtain $β< 2.89$ and $β< 3.53$ in the high and low lensing models, respectively. These constraints strongly disfavor steep QLF shapes previously proposed in the literature.