论文标题
质量图截断对强镜模拟的影响
The impact of mass map truncation on strong lensing simulations
论文作者
论文摘要
强力镜头是测量宇宙学参数和研究星系演化机制的强大工具。但是,定量强的镜头研究通常需要模拟观察。为了捕获星系的全部复杂性,镜头星系通常是从高分辨率,仅暗物质或水力动力模拟中得出的。这些有自己的局限性,但是我们使用它们模仿模拟镜头系统的方式也可能引入重要的人工制品。在这项工作中,我们通过将不同的截断方案应用于具有保形的同性构造轮廓的基准密度谱,并识别并探索质量截断对强镜的模拟的特定影响。我们的主要发现是,不当的质量截断会引入不希望的人造剪切。虚假剪切的幅度取决于截断区域的形状和大小以及镜头密度剖面的斜率和椭圆度。由于这种效果,通过对这些系统进行建模来推断的H0或剪切幅度的值可能会被几种易变的偏差。但是,我们表明效果可以忽略不计,只要镜头投影的地图延伸至爱因斯坦半径的至少50倍。
Strong gravitational lensing is a powerful tool to measure cosmological parameters and to study galaxy evolution mechanisms. However, quantitative strong lensing studies often require mock observations. To capture the full complexity of galaxies, the lensing galaxy is often drawn from high resolution, dark matter only or hydro-dynamical simulations. These have their own limitations, but the way we use them to emulate mock lensed systems may also introduce significant artefacts. In this work we identify and explore the specific impact of mass truncation on simulations of strong lenses by applying different truncation schemes to a fiducial density profile with conformal isodensity contours. Our main finding is that improper mass truncation can introduce undesired artificial shear. The amplitude of the spurious shear depends on the shape and size of the truncation area as well as on the slope and ellipticity of the lens density profile. Due to this effect, the value of H0 or the shear amplitude inferred by modelling those systems may be biased by several percents. However, we show that the effect becomes negligible provided that the lens projected map extends over at least 50 times the Einstein radius.