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RAY-RAMSES : a code for ray tracing on the fly in N-body simulations.

机译:RAY-RAMSES:用于在N体模拟中动态跟踪光线的代码。

摘要

We present a ray tracing code to compute integrated cosmological observables on the fly in AMR N-body simulations. Unlike conventional ray tracing techniques, our code takes full advantage of the time and spatial resolution attained by the N-body simulation by computing the integrals along the line of sight on a cell-by-cell basis through the AMR simulation grid. Moroever, since it runs on the fly in the N-body run, our code can produce maps of the desired observables without storing large (or any) amounts of data for post-processing. We implemented our routines in the RAMSES N-body code and tested the implementation using an example of weak lensing simulation. We analyse basic statistics of lensing convergence maps and find good agreement with semi-analytical methods. The ray tracing methodology presented here can be used in several cosmological analysis such as Sunyaev-Zel'dovich and integrated Sachs-Wolfe effect studies as well as modified gravity. Our code can also be used in cross-checks of the more conventional methods, which can be important in tests of theory systematics in preparation for upcoming large scale structure surveys.
机译:我们提出了一个射线追踪代码,以在AMR N体模拟中动态计算集成的宇宙学可观测量。与传统的光线跟踪技术不同,我们的代码通过AMR仿真网格逐个单元地计算沿视线的积分,从而充分利用了N体仿真所获得的时间和空间分辨率。 Moroever,因为它是在N体运行中动态运行的,所以我们的代码可以生成所需可观测值的地图,而无需存储大量(或任何)数据以进行后处理。我们在RAMSES N体代码中实现了例程,并使用弱镜头模拟示例测试了实现。我们分析了透镜会聚图的基本统计数据,并与半分析方法找到了很好的一致性。此处介绍的射线追踪方法可用于几种宇宙学分析,例如Sunyaev-Zel'dovich和综合的Sachs-Wolfe效应研究以及修正的重力。我们的代码还可以用于更常规方法的交叉检查,这在理论系统测试中很重要,可以为即将进行的大规模结构勘测做准备。

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