Theoretical Study of Extensive Air Shower Effects in Atmosphere by Simulating the Lateral structure of Several Cosmic Radiations

Hassanen Abdulhussaen Jassim, A. AL-RUBAIEE, I. Al-Alawy
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引用次数: 3

Abstract

Extensive air showers (EAS) are a cascade of electromagnetic radiation and ionized particles that produced in the atmosphere through the interaction of a primary cosmic ray with the atom of nucleus in the air producing a huge amount of secondary particles such as X-ray, electrons, neutrons, muons, alpha particles, etc. In this work, EAS effects were demonstrated by estimating the lateral distribution function (LDF) at ultrahigh energies of the various cosmic ray particles. The LDF of charged particles such as electron and positron pair production, gamma and muons particles was simulated at ultrahigh energies 10^16, 10^18 and 10^19 eV. The simulation was carried out using an air shower simulator called AIRES system version 2.6.0. The effect of the primary particles, energies and zenith angle on the LDF of charged particles produced in the EAS was taken into account. Comparison of LDF for charged particles and experimental results gave good agreement for electron and positron pair production and muons particles at 10^19 eV for 0 and 10 zenith angles
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通过模拟几种宇宙辐射的横向结构对大气中广泛气淋效应的理论研究
广泛的空气阵雨(EAS)是通过一次宇宙射线与空气中的原子或原子核相互作用在大气中产生的电磁辐射和电离粒子的级联,产生大量的二次粒子,如x射线、电子、中子、介子、α粒子等。在这项工作中,通过估计各种宇宙射线粒子在超高能量下的横向分布函数(LDF)来证明EAS效应。在10^16、10^18和10^19 eV的超高能量下,模拟了电子和正电子对、γ粒子和介子粒子等带电粒子的LDF。采用AIRES系统2.6.0版本的风淋室模拟器进行仿真。考虑了主粒子、能量和天顶角对带电粒子LDF的影响。带电粒子的LDF与实验结果的比较表明,在0和10天顶角下,电子和正电子对的产生和10^19 eV的介子粒子的产生是一致的
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