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Design of a Small Cosmic Ray Air Shower Array to Study Atmospheric Effects

机译:小宇宙雷气淋浴阵列的设计,以研究大气效应

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High energy primary cosmic rays (E > 100 TeV) produce showers of secondary particles in the atmosphere, called EAS (Extensive Air Showers). An EAS may be recorded by the method of coincidence between a number of scintillation detectors. A small square array of four detectors is designed using Monte Carlo simulation method combined with analytical lateral distribution function for the charged particles at ground level. Preliminary calculation using CORSIKA Simulation code gives an estimate of the size of the array as a function of detector effective area and threshold energy of the primary cosmic ray initiating the shower. The growth and absorption of an EAS depends on the amount of matter traversed, which is more for higher zenith angles. Hence zenith angle distribution may be correlated with atmospheric effects. Experimentally zenith and azimuth angles for individual events can be measured by timing information recorded by each scintillator. In this paper, design of the array in terms of size and threshold parameters and Data Acquisition methods are presented.
机译:高能量初级宇宙射线(E> 100 TEV)在大气中产生次要粒子的淋浴,称为EAS(广泛的空气淋浴)。可以通过多个闪烁探测器之间的巧合方法来记录EA。使用Monte Carlo仿真方法设计了一个小型四个探测器阵列,与地面带电粒子的分析横向分布函数相结合。使用Corsika仿真码的初步计算,估计阵列的尺寸作为探测器有效区域和引发淋浴的初级宇宙射线的阈值。 EAS的生长和吸收取决于遍历的物质量,这更高的天性角度更高。因此,天顶角分布可以与大气效应相关。实验上的天顶和各方面的方位角可以通过由每个闪烁体记录的定时信息来测量。在本文中,提出了阵列的设计,呈现尺寸和阈值参数和数据采集方法。

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