论文标题
在广泛的空气淋浴中的纵向开发的模拟和参数化,以用于不同的标型相互作用模型
Simulation and Parameterization of Longitudinal Development in Extensive Air Showers for Different Hadronic Interaction Models
论文作者
论文摘要
通过使用Aires系统(版本19.04.00)探索几种HADRONIC相互作用模型(Sibyll,QGSJET和EPOS)的纵向发展,对广泛的空气淋浴(EAS)进行了模拟分析。对不同的高能量(10^17、10^18和10^19)EV和两个不同的主要颗粒,质子以及铁核进行了模拟,具有几个天顶角值(0^o,10^o和30^o)。使用Sigmoidal功能(Boltzmann模型)对纵向发育的淋浴大小进行了参数化,并给出了新的四个参数,作为在能量范围(10^17-10^19)eV之间的主要能量的函数。获得的结果数据(淋浴粒子的参数数量)以及实验结果(Pierre Auger实验)之间的比较为垂直EAS淋浴的固定初级能量10^19 eV提供了引人入胜的匹配。
The simulation analysis of the Extensive Air Showers (EAS) was executed by exploring the longitudinal development employing the AIRES system (version 19.04.00) for several hadronic interaction models (SIBYLL, QGSJET, and EPOS) for high energies. The simulation was performed for different high energies (10^17, 10^18, and 10^19) eV and two dissimilar primary particles, proton as well iron nuclei, with several zenith angles values (0^o, 10^o, and 30^o). The shower size of longitudinal development was parameterized using the sigmoidal function (Boltzmann model) and gave a new four parameters as functions of the primary energy between the energy extent (10^17-10^19) eV. The comparison among the acquired results data (the parameterized number of shower particles) along with the experimental results (Pierre Auger experiment) had offered a fascinating matching for the primary proton at the fixed primary energy 10^19 eV for vertical EAS showers.