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首页> 外文期刊>Physical review, D >Analytic calculation of radio emission from parametrized extensive air showers: A tool to extract shower parameters
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Analytic calculation of radio emission from parametrized extensive air showers: A tool to extract shower parameters

机译:参数化广泛的空气淋浴的无线电发射的分析计算:提取淋浴参数的工具

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The radio intensity and polarization footprint of a cosmic-ray induced extensive air shower is determined by the time-dependent structure of the current distribution residing in the plasma cloud at the shower front. In turn, the time dependence of the integrated charge-current distribution in the plasma cloud, the longitudinal shower structure, is determined by interesting physics which one would like to extract, such as the location and multiplicity of the primary cosmic-ray collision or the values of electric fields in the atmosphere during thunderstorms. To extract the structure of a shower from its footprint requires solving a complicated inverse problem. For this purposewe have developed a code that semianalytically calculates the radio footprint of an extensive air shower given an arbitrary longitudinal structure. This code can be used in an optimization procedure to extract the optimal longitudinal shower structure given a radio footprint. On the basis of airshower universality we propose a simple parametrization of the structure of the plasma cloud. This parametrization is based on the results of Monte Carlo shower simulations. Deriving the parametrization also teaches which aspects of the plasma cloud are important for understanding the features seen in the radioemission footprint. The calculated radio footprints are compared with microscopic CoREAS simulations.
机译:宇宙射线诱导的广泛空气淋浴的无线电强度和偏振占地面积由俯视淋浴前的等离子体云中的电流分布的时间依赖性结构来确定。反过来,通过有趣的物理学确定等离子体云,纵向淋浴结构中的集成电荷电流分布的时间依赖性,其中一个人想提取,例如主要宇宙射线碰撞的位置和多重性或雷暴期间大气中电场的价值。从其足迹中提取淋浴的结构需要解决复杂的逆问题。为此目的,我们已经开发了一种代码,即半自我计算出在任意纵向结构的广泛空气淋浴的无线电占地面积。该代码可用于优化过程以提取给定无线占地面积的最佳纵向淋浴结构。在空调普遍性的基础上,我们提出了一种简单的等离子体云结构参数化。该参数化是基于Monte Carlo淋浴模拟的结果。导出参数化还教导了等离子​​体云的哪些方面对于了解在放射性占地面积中看到的特征是重要的。将计算出的无线电占用占地面积与微观型核仿真进行比较。

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