论文标题

通过大偏差理论获得的(CMB)透镜收敛的(CMB)透镜收敛的单点统计的出生校​​正

Post-Born corrections to the one-point statistics of (CMB) lensing convergence obtained via large deviation theory

论文作者

Barthelemy, Alexandre, Codis, Sandrine, Bernardeau, Francis

论文摘要

通过宇宙的大规模结构,星系和CMB光子的弱透镜是最有前途的宇宙学探针之一,即将进行的实验用于其测量结果,例如欧几里得/LSST和CMB阶段4阶段4实验。随着越来越精确的测量,迫切需要准确的理论预测。在这项工作中,我们专注于弱透镜收敛场的高阶统计数据,即其累积物,例如偏度和峰度及其单点概率分布(PDF),我们使用扰动理论进行量化,校正来自后生的效应,含义超出了直线和独立镜头近似。在一阶的情况下,出现了两个这样的校正:镜头镜头耦合和地球偏差。尽管校正对于低源红移(低于少数易率),因此对于星系镜头而言,它们在较高的红移中变得很重要,特别是在CMB镜头的背景下,发现从树订单扰动理论中计算出的非高斯率与信号本身相同。我们将这些关于偏度的后出生校正包括在具有大偏差理论获得的单点收敛性PDF的预测中,并成功地测试了这些结果,以针对数值模拟进行测试。确实证明了模型的PDF的性能优于大约10个弧形的光圈的百分比,并且通常在平均值周围的三个sigmas区域中。

Weak lensing of galaxies and CMB photons through the large-scale structure of the Universe is one of the most promising cosmological probes with upcoming experiments dedicated to its measurements such as Euclid/LSST and CMB Stage 4 experiments. With increasingly precise measurements, there is a dire need for accurate theoretical predictions. In this work, we focus on higher order statistics of the weak lensing convergence field, namely its cumulants such as skewness and kurtosis and its one-point probability distribution (PDF), and we quantify using perturbation theory the corrections coming from post-Born effects, meaning beyond the straight-line and independent lenses approximations. At first order, two such corrections arise: lens-lens couplings and geodesic deviation. Though the corrections are small for low source redshifts (below a few percents) and therefore for galaxy lensing, they become important at higher redshifts, notably in the context of CMB lensing, where the non-gaussianities computed from tree-order perturbation theory are found to be of the same order as the signal itself. We include these post-Born corrections on the skewness into a prediction for the one-point convergence PDF obtained with large deviation theory and successfully test these results against numerical simulations. The modelled PDF is indeed shown to perform better than the percent for apertures above ~ 10 arcminutes and typically in the three sigmas region around the mean.

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