首页> 外文会议>Carpathian School of Physics >Primary Energy Reconstruction from the Charged Particle Densities Recorded with the KASCADE-Grande Detector at 500 m Distance from Shower Core
【24h】

Primary Energy Reconstruction from the Charged Particle Densities Recorded with the KASCADE-Grande Detector at 500 m Distance from Shower Core

机译:从淋浴核心距离距离的Kascad-Grande探测器带电粒子密度的主要能量重建

获取原文

摘要

Previous EAS investigations have shown that for a fixed primary energy the charged particle density becomes independent of the primary mass at certain (fixed) distances from the shower core. This feature can be used as an estimator for the primary energy. We present results on the reconstruction of the primary energy spectrum of cosmic rays from the experimentally recorded S(500) observable (the density of charged particles at 500 m distance to the shower core) using the KASCADE-Grande detector array. The KASCADE-Grande experiment is hosted by the Karlsruhe Institute for Technology – Campus North, Karlsruhe, Germany, and operated by an international collaboration. The constant intensity cut (CIC) method is applied to evaluate the attenuation of the S(500) observable with the zenith angle and is corrected for. A calibration of S(500) values with the primary energy has been worked out by simulations and was applied to the data to obtain the primary energy spectrum (in the energy range log_(10)[E_0/GeV]∈ [7.5, 9]). The systematic uncertainties induced by different sources are considered. In addition, a correction based on a response matrix is applied to account for the effects of shower-to-shower fluctuations on the spectral index of the reconstructed energy spectrum.
机译:以前的EAS研究表明,对于固定的初级能量,带电粒子密度与淋浴芯的某些(固定)距离处的主要质量无关。该功能可用作主要能量的估计。我们使用Kascade-Grande探测器阵列从实验记录的S(500)可观察到的(500米距离为500米处的带电粒子的密度)的宇宙射线的主要能谱的结果。 Kascade-Grande实验由Karlsruhe Technology研究所 - 坎普斯北,卡尔斯鲁厄,德国,并通过国际合作经营。施加恒定强度切割(CIC)方法以评估可观察到的天顶角的S(500)的衰减并校正。通过仿真对具有主要能量的S(500)值的校准并应用于数据以获得主要能量谱(在能量范围LOG_(10)[E_0 / GEV]∈[7.5,9]中)。考虑了不同来源引起的系统不确定性。另外,应用基于响应矩阵的校正来施加淋浴到淋浴波动对重建能谱的光谱索引的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号