首页> 外文期刊>The Astrophysical journal >COSMIC-RAY BACKGROUND FLUX MODEL BASED ON A GAMMA-RAY LARGE AREA SPACE TELESCOPE BALLOON FLIGHT ENGINEERING MODEL
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COSMIC-RAY BACKGROUND FLUX MODEL BASED ON A GAMMA-RAY LARGE AREA SPACE TELESCOPE BALLOON FLIGHT ENGINEERING MODEL

机译:基于伽玛射线大面积望远气球气球飞行工程模型的宇宙射线背景通量模型

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摘要

Cosmic-ray background fluxes were modeled on the basis of existing measurements and theories and are presented here. The model, originally developed for the Gamma-Ray Large Area Space Telescope (GLAST) balloon experiment, covers the entire solid angle (4π sr), the sensitive energy range of the instrument (~10 MeV to 100 GeV), and the abundant components (proton, alpha particle, e~-, e~+, μ~-, μ~+, and gamma ray). It is expressed in analytic functions in which modulations due to solar activity and the Earth's geomagnetism are parameterized. Although the model is intended to be used primarily for the GLAST balloon experiment, model functions in low Earth orbit are also presented and can be used for other high-energy astrophysical missions. The model has been validated via comparison with the data of the GLAST balloon experiment.
机译:在现有测量和理论的基础上对宇宙射线背景通量进行了建模,并在此处介绍。该模型最初是为伽玛射线大面积太空望远镜(GLAST)气球实验而开发的,涵盖了整个立体角(4πsr),仪器的敏感能量范围(约10 MeV至100 GeV)以及丰富的组件(质子,α粒子,e〜-,e〜+,μ〜-,μ〜+和伽马射线)。它用解析函数表示,其中对由于太阳活动和地球地磁引起的调制进行了参数化。尽管该模型主要用于GLAST气球实验,但也介绍了低地球轨道的模型功能,可用于其他高能天体物理任务。该模型已通过与GLAST气球实验数据进行比较而得到验证。

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