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Simulation of an experiment on detecting ultra-high-energy particles with regard to the structure of the lunar soil surface layer

机译:关于月球土壤表层结构的超高能粒子检测实验的模拟

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摘要

The feasibility of using the lunar orbital radio detector to detect radio signals from cascades initiated by ultra-high-energy cosmic rays interacting with the lunar regolith is studied. Simulation by the Monte Carlo method demonstrates that, with the regolith thickness randomly distributed in the range 2-12 m, the detection of radio signals reflected from the lower boundary of the regolith (for particle energies W a parts per thousand yen 10(20) eV) increases the number of valid events severalfold. The additional contribution due to the reflected radio-frequency radiation greatly enhances the scientific potential of experiments with the lunar orbital radio detector.
机译:研究了使用月球轨道无线电探测器探测由超高能宇宙射线与月球巨石相互作用而产生的叶栅的无线电信号的可行性。蒙特卡洛方法的模拟表明,在软膏厚度在2-12 m范围内随机分布的情况下,从硬膏的下边界反射的无线电信号的检测(对于粒子能量W而言,是每千日元的份数10(20) eV)将有效事件的数量增加了几倍。反射的射频辐射带来的额外贡献极大地增强了月球轨道无线电探测器进行实验的科学潜力。

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