首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A method for energy estimation and mass composition determination of primary cosmic rays at the Chacaltaya observation level based on the atmospheric Cherenkov light technique
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A method for energy estimation and mass composition determination of primary cosmic rays at the Chacaltaya observation level based on the atmospheric Cherenkov light technique

机译:基于大气Cherenkov光技术的Chacaltaya观测水平的一次宇宙射线能量估计和质量组成确定的方法

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摘要

A new method for energy and mass composition estimation of primary cosmic rays based on the atmospheric Cherenkov light flux in extensive air showers (EAS) is proposed. The Cherenkov light flux in EAS initiated by primary protons and iron nuclei is simulated with the CORSIKA 5.62 code for the Chacaltaya observation level (536 g/cm~2) in the energy range 10 TeV-10 PeV. An adequate model for the lateral distribution of Cherenkov light in showers is obtained. Using the model and a solution for the overdetermined system of nonlinear equations based on the Gauss-Newton method with autoregularization, two different detector arrangements are compared. The accuracies in energy and shower axis determination are studied and the corresponding selection criteria are proposed. An approximation with a nonlinear fit is obtained and the energy dependence of the proposed model parameters is studied. A detailed study of the model parameters as a function of the primary energy is made. This permits, taking into account the properties of the proposed method and the strong nonlinearity of the model, a distinction to be made between proton and iron primaries. The detector response for the detector sets is simulated and the accuracies in energy determination are calculated. In addition, the accuracies in shower axis determination are studied and criteria for shower axis position estimation are proposed.
机译:提出了一种基于大风淋(EAS)中大气Cherenkov光通量的主要宇宙射线能量和质量组成估算的新方法。用CORSIKA 5.62代码对Chacaltaya观测水平(536 g / cm〜2)的能量范围为10 TeV-10 PeV的初子质子和铁核引发的Cherenkov光通量进行仿真。获得了淋浴中切伦科夫光的横向分布的适当模型。使用该模型和基于具有自动调节功能的高斯-牛顿法的超定非线性方程组的解,比较了两种不同的探测器布置。研究了能量和淋浴轴确定的准确性,并提出了相应的选择标准。获得具有非线性拟合的近似值,并研究了所提出的模型参数的能量依赖性。详细研究了模型参数作为一次能量的函数。考虑到所提出方法的特性和模型的强非线性,这允许在质子和铁原色之间进行区分。模拟了探测器组的探测器响应,并计算了能量确定的准确性。此外,研究了淋浴轴确定的准确性,并提出了淋浴轴位置估计的标准。

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