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An approach to identify the mass and energy of the primary cosmic rays around the knee region using arrival time distribution of secondary charged particles in extensive air showers

机译:使用次级带电粒子在广泛的空气淋浴中的到达时间分布识别膝关节区域周围的初级宇宙射线质量和能量的方法

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In this study a method will be presented to discriminate the mass and energy of the primary cosmic rays. This method uses the time distribution of secondaries in air showers originated from different primaries generated by CORSIKA Monte Carlo code at the Tehran 1200 m level (35°43'N, 51°20'E, 1200 m a.s.l).Simulations were performed for four primary energies (0.3, 1, 3 and 10 PeV) around the knee of cosmic ray spectrum. Three parameters of time distribution rise time, fall time and time of maximum were defined as mass and energy discriminator. By calculating Merit Factor(MF) ability of these parameters to discriminate mass and energy was evaluated. Heavy and light primary particles slightly separated in vertical 10 PeV showers by comparing time distribution's fall time of secondary particles with MF = 1.68 ± 0.08 in 10 m from the shower core but for inclined showers this method does not work. In the same way, energy of primary particles also can be discriminated with one order of magnitude accuracy with MF = 2.17 ± 0.19 for showers with energy 0.3 and 3 PeV and MF = 2.09 ±0.13 for showers with energy 1 and 10 PeV in 25 m 25 m from the shower core. In case of inclined showers, unlike mass discrimination their energies can be separated well. Effect of timing uncertainty of detectors on the ability of this method on energy discrimination is also studied. The results of this study can be applied in parallel with the common shower reconstruction techniques and other data analysis methods to improve estimation of high and ultra-high energy primary particle's energy.
机译:在该研究中,将提出一种方法以区分初级宇宙射线的质量和能量。该方法使用来自德黑兰1200米级(35°43'n,51°20'e,1200米ASL)的Corsika Monte Carlo Code产生的空气淋浴中的空气淋浴中的赋值时间分布。进行四个围绕宇宙射线光谱的膝盖围绕初级能量(0.3,1,3和10 PEV)。三个时间分布上升时间的参数,最大值的下降时间和时间被定义为质量和能量鉴别器。通过计算这些参数以辨别质量和能量的优点因子(MF)能力。通过比较时间分布的次级颗粒的次颗粒在淋浴核心10米中的次级粒子的下降时间与淋浴核心相比,重型和初级颗粒在垂直10pe淋浴中略微分开,但是对于倾斜的淋浴,这种方法不起作用。以相同的方式,初级粒子的能量也可以用一个幅度的尺寸精度与MF = 2.17±0.19的次级,用于淋浴的MF = 2.17±0.19,并且对于25米的供能1和10 PEV的MF = 2.09±0.13距离淋浴核心25米。在倾斜淋浴的情况下,与质量辨别不同,它们的能量可以很好地分开。还研究了探测器时序不确定性对这种方法对能量辨别方法的能力的影响。该研究的结果可以与共同的淋浴重建技术和其他数据分析方法并行应用,以改善高和超高能量粒子能量的估计。

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