论文标题

在弱重力镜头研究中考虑对象检测偏差

Accounting for object detection bias in weak gravitational lensing studies

论文作者

Hoekstra, Henk, Kannawadi, Arun, Kitching, Thomas D.

论文摘要

如果可以准确测量远处星系的表观比对,则大规模结构的弱透镜是宇宙学的强大探针。因此,大多数研究都集中在改善形状测量本身的保真度上,但是对象检测的前面步骤在很大程度上被忽略了。在本文中,我们研究了对象检测对类似欧几里子的调查的影响,并表明它导致偏见超过了下一代宇宙剪切调查的要求。在现实的情况下,星系的混合是检测偏差的重要来源。我们发现,元探望能够考虑混合,导致平均乘法偏见满足对IV阶段调查的要求的平均乘法偏差,前提是可以使用足够精确的点差函数。需要进一步的工作来估计实际调查的性能。结合足够逼真的图像模拟,这为IV阶段调查的准确剪切估计提供了一种可行的方向。

Weak lensing by large-scale structure is a powerful probe of cosmology if the apparent alignments in the shapes of distant galaxies can be accurately measured. Most studies have therefore focused on improving the fidelity of the shape measurements themselves, but the preceding step of object detection has been largely ignored. In this paper we study the impact of object detection for a Euclid-like survey and show that it leads to biases that exceed requirements for the next generation of cosmic shear surveys. In realistic scenarios, blending of galaxies is an important source of detection bias. We find that MetaDetection is able to account for blending, leading to average multiplicative biases that meet requirements for Stage IV surveys, provided a sufficiently accurate model for the point spread function is available. Further work is needed to estimate the performance for actual surveys. Combined with sufficiently realistic image simulations, this provides a viable way forward towards accurate shear estimates for Stage IV surveys.

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