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A new Monte Carlo Generator of Ultra High Energy Cosmic Rays from the Local and Distant Universe

机译:来自本地和遥远宇宙的新型超高能宇宙射线蒙特卡洛发生器

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For the understanding of the origin and propagation of ultra-high energy cosmic rays (UHECR) we devel-opeda new approach to simulating UHECRs from an arbitrary number of sources based on Monte Carlo technique. Themethod consists of a combination of three steps. For distant sources we apply commonly accepted parameterizations tocalculate the contribution to the observed cosmic ray flux. For sources of the local universe we use forward trackingthrough realistic matter distributions and magnetic fields resulting from explicit simulations of large-scale structure for-mation.From the calculations and the forward tracking we generate maps of the probability to observe a particle with agiven energy from a discrete direction. To account for deflections in the galactic field, these lenses are transformed bymatrices calculated from backtracking of antiparticles through field parameterizations. Based on these probability maps,Monte Carlo production of individual UHECR data is performed which will then be compared to the physics analyses ofUHECR measurements. This simulated UHECR data will serve for optimizing the analysis techniques used in UHECRmeasurements as well as constraining the parameter space of the underlying source and magnetic field models.
机译:为了了解超高能宇宙射线(UHECR)的起源和传播,我们开发了一种新方法,用于基于蒙特卡罗技术模拟任意数量来源的UHECR。该方法由三个步骤组成。对于遥远的源,我们应用普遍接受的参数化来计算对观测到的宇宙射线通量的贡献。对于局部宇宙的源头,我们使用通过实际物质分布和大范围结构形式的显式模拟所产生的磁场的前向跟踪,从计算和前向跟踪中生成概率图,以观察具有给定能量的粒子离散方向。为了解决银河场中的偏转,这些透镜通过根据场参数化从反粒子的回溯计算出的矩阵进行变换。基于这些概率图,执行单个UHECR数据的蒙特卡罗生成,然后将其与UHECR测量的物理分析进行比较。此模拟的UHECR数据将用于优化UHECR测量中使用的分析技术,并限制基础源模型和磁场模型的参数空间。

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