论文标题
精确弱透镜的第一个剪切测量
The first shear measurements from precision weak lensing
论文作者
论文摘要
我们提出了一种端到端方法,以衡量弱透镜对利用运动学信息的单个星系 - 果胶系统的影响。使用这种方法,我们已经测量了从18个弱镜星系的速度场中测量的剪切信号。我们仅根据来源的属性选择了一个系统样本,要求它们是明亮的(显然是$ i $ band幅度$ <17.4 $)和附近的宇宙($ z <0.15 $)。我们已经观察到源源的速度字段,带有2.3m望远镜上的光学IFU,并使用带有外部剪切的简单圆形运动模型拟合它们。与预测的$ \langleγ_{pred} \ rangle = 0.005 $相比,我们的平均剪切量为$ \langleγ\ rangle = 0.020 \ pm 0.008 $。尽管仍然是一种统计方法,但我们的结果表明,这种新的弱透镜方法可以克服传统基于堆叠的技术的某些局限性。我们详细描述了该方法的所有步骤,并为本研究中使用的弱镜头来源公开提供所有速度图。
We present an end-to-end methodology to measure the effects of weak lensing on individual galaxy-galaxy systems exploiting their kinematic information. Using this methodology, we have measured a shear signal from the velocity fields of 18 weakly-lensed galaxies. We selected a sample of systems based only on the properties of the sources, requiring them to be bright (apparent $i$-band magnitude $ < 17.4$) and in the nearby Universe ($z < 0.15$). We have observed the velocity fields of the sources with WiFeS, an optical IFU on a 2.3m telescope, and fitted them using a simple circular motion model with an external shear. We have measured an average shear of $\langle γ\rangle = 0.020 \pm 0.008$ compared to a predicted $\langle γ_{pred} \rangle = 0.005$ obtained using median stellar-to-halo relationships from the literature. While still a statistical approach, our results suggest that this new weak lensing methodology can overcome some of the limitations of traditional stacking-based techniques. We describe in detail all the steps of the methodology and make publicly available all the velocity maps for the weakly-lensed sources used in this study.