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Simulation of ultra-high energy photon propagation in the geomagnetic field

机译:超高能光子在地磁场中传播的模拟

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The identification of primary photons or specifying stringent limits on the photon flux is of major importance for understanding the origin of ultra-high energy (UHE) cosmic rays. UHE photons can initiate particle cascades in the geomagnetic field, which leads to significant changes in the subsequent atmospheric shower development. We present a Monte Carlo program allowing detailed studies of conversion and cascading of UHE photons in the geomagnetic field. The program named PRESHOWER can be used both as an independent tool or together with a shower simulation code. With the stand-alone version of the code it is possible to investigate various properties of the particle cascade induced by UHE photons interacting in the Earth's magnetic field before entering the Earth's atmosphere. Combining this program with an extensive air shower simulation code such as CORSIKA offers the possibility of investigating signatures of photon-initiated showers. In particular, features can be Studied that help to discern such showers from the ones induced by hadrons. As an illustration, calculations for the conditions of the southern part of the Pierre Auger Observatory are presented.
机译:初级光子的识别或对光子通量规定严格的限制对于理解超高能(UHE)宇宙射线的起源至关重要。 UHE光子可以在地磁场中引发粒子级联,从而导致随后的大气淋浴发展发生重大变化。我们提出了一个蒙特卡罗程序,允许对地磁场中UHE光子的转换和级联进行详细研究。名为PRESHOWER的程序既可以用作独立工具,也可以与淋浴模拟代码一起使用。使用该代码的独立版本,可以研究由UHE光子在进入地球大气层之前在地球磁场中相互作用而诱发的粒子级联的各种特性。将该程序与广泛的空气淋浴模拟代码(例如CORSIKA)结合使用,可以研究光子引发的淋浴的签名。特别是,可以研究有助于区分强风引起的阵雨的特征。作为说明,给出了皮埃尔·奥格天文台南部条件的计算。

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