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Projection Effects of Large-scale Structures on Weak-lensing Peak Abundances

机译:大型结构对弱透镜峰丰度的投影效应

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High peaks in weak lensing (WL) maps originate dominantly from the lensing effects of single massive halos. Their abundance is therefore closely related to the halo mass function and thus a powerful cosmological probe. However, besides individual massive halos, large-scale structures (LSS) along lines of sight also contribute to the peak signals. In this paper, with ray-tracing simulations, we investigate the LSS projection effects. We show that for current surveys with a large shape noise, the stochastic LSS effects are subdominant. For future WL surveys with source galaxies having a median redshift z med?~?1 or higher, however, they are significant. For the cosmological constraints derived from observed WL high-peak counts, severe biases can occur if the LSS effects are not taken into account properly. We extend the model of Fan et al. by incorporating the LSS projection effects into the theoretical considerations. By comparing with simulation results, we demonstrate the good performance of the improved model and its applicability in cosmological studies.
机译:弱透镜(WL)图中的高峰值主要来自单个块状光环的透镜效应。因此,它们的丰度与光晕质量功能密切相关,因此是一种有力的宇宙学探测。但是,除了单个巨大的光晕外,沿视线的大型结构(LSS)也会对峰值信号产生影响。在本文中,通过光线跟踪模拟,我们研究了LSS投影效果。我们表明,对于具有较大形状噪声的当前调查,随机LSS效应占主导地位。然而,对于未来的源银河系具有中位数红移zmedθ〜?1或更高的WL调查,它们是有意义的。对于从观测到的WL高峰计数得出的宇宙学约束,如果未适当考虑LSS效应,则可能会出现严重偏差。我们扩展了范等人的模型。通过将LSS投影效果纳入理论考虑。通过与仿真结果进行比较,我们证明了改进模型的良好性能及其在宇宙学研究中的适用性。

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