论文标题

部分可观测时空混沌系统的无模型预测

Accurate dark matter halo elongation from weak-lensing stacking analysis

论文作者

Gonzalez, Elizabeth J., Hoffmann, Kai, Gaztañaga, Enrique, Lambas, Diego R. García, Fosalba, Pablo, Crocce, Martin, Castander, Francisco J., Makler, Martín

论文摘要

量化光环各向异性质量分布的形状估计是有价值的参数,可提供有关其组装过程和进化的信息。用于测量集群液样样品的平均形状的测量可用于测试光环形成方案,并使用这些系统来改善潜在偏差的建模。在这项工作中,我们测试了应用弱透镜堆叠技术的光环簇形状和质量的回收。为此,我们使用镜头$剪切$和一个新的暗物质光晕目录,这些目录来自宇宙学仿真小鼠GC的轻锥输出。我们通过组合对几个光晕样品获得的透镜信号来执行这项研究,并根据黑暗分布的主要方向选择其质量和红移。在分析中,我们测试了几种潜在系统学的影响,例如所采用的建模,邻近质量分布的贡献,误会和未对准效应。我们的结果表明,当考虑到晕光松弛状态的一些考虑因素时,半轴比率估计值在$ 5 \%$之内与堆叠光环的预计暗粒子颗粒分布的平均形状一致。介绍的方法提供了一种有用的工具,可以得出可靠的星系簇形状,并将它们与数值模拟中预期的形状进行对比。此外,我们提出的建模考虑了相邻光环的贡献,使人们可以约束周围质量分布的伸长率。

Shape estimates that quantify the halo anisotropic mass distribution are valuable parameters that provide information on their assembly process and evolution. Measurements of the mean shapes for a sample of cluster-sized halos can be used to test halo formation scenarios, as well as improving the modelling of potential biases in constraining cosmological parameters using these systems. In this work, we test the recovery of halo cluster shapes and masses applying weak-lensing stacking techniques. To this end, we use lensing $shear$ and a new dark matter halo catalogue, derived from the light-cone output of the cosmological simulation MICE-GC. We perform this study by combining the lensing signals obtained for several samples of halos, selected according to their mass and redshift, taking into account the main directions of the dark-matter distributions. In the analysis we test the impact of several potential systematics, such as the adopted modelling, the contribution of the neighbouring mass distributions, miscentering and misalignment effects. Our results show that, when some considerations regarding the halo relaxation state are taken into account, the lensing semi-axis ratio estimates are in agreement within $5\%$ with the mean shapes of the projected dark-matter particle distribution of the stacked halos. The methodology presented provides a useful tool to derive reliable shapes of galaxy clusters and to contrast them with those expected from numerical simulations. Furthermore, our proposed modelling, which takes into account the contribution of neighbouring halos, allows one to constrain the elongation of the surrounding mass distribution.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源