首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the Challenges of Measuring Energetic Particles in the Inner Belt: A Geant4 Simulation of an Energetic Particle Detector Instrument, REPTile-2
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On the Challenges of Measuring Energetic Particles in the Inner Belt: A Geant4 Simulation of an Energetic Particle Detector Instrument, REPTile-2

机译:在测量高能粒子的挑战在内部辐射带:Geant4模拟的高能粒子探测器仪器,REPTile-2

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摘要

Following the retirement of the community supported Van Allen Probes mission, the quest for high-quality energetic particle measurements in the radiation belts is likely to be taken on by smaller spacecraft like CubeSats in the foreseeable future. Here we introduce the Relativistic Electron Proton Telescope integrated little experiment-2 (REPTile-2), a miniaturized (~1.5 U) solid-state charged particle telescope that aims to undertake this challenging task. It incorporates detailed pulse-height analysis to enable 60 electron channels and 60 proton channels and includes anticoincidence detectors to minimize unwanted background contamination. This paper presents a description of the REPTile-2 design and emphasizes the importance of extensive Geant4-based analysis to inform the design of a new energetic particle detector and characterize the instrument response. Our analysis shows that REPTile-2 can measure ~0.3–~4 MeV electrons and ~6.7–35 MeV protons with energy resolution (ΔE/E) of 7%–38% for electrons and 1.5%–5% for protons. Results from a Sr-90/Y-90 radioactive source test have verified the instrument performance and the validity of the Geant4 simulations. These energetic particle measurements will enable a new scientific understanding of the inner radiation belt, where unwanted contamination from the unforgiving penetration of highly energetic protons (tens of MeV to GeV) is common, and provide detailed quantification of the inner belt electrons and protons in the low-Earth orbit that is crucial for space weather modeling.
机译:的退休社区范艾伦辐射探测任务,寻求支持高质量的高能粒子测量辐射带可能是由小飞船的立方体卫星在可预见的未来。相对论性电子质子望远镜集成实验二(REPTile-2),小型(~ 1.5 U)固态带电粒子的望远镜旨在进行这个具有挑战性的任务。包含详细的脉冲振幅分析使质子60电子渠道和60渠道,包括反符合探测器尽量减少不必要的背景污染。本文提出的描述REPTile-2设计和强调的重要性广泛的Geant4-based分析通知一个新的高能粒子探测器和设计仪器响应的特点。分析表明,REPTile-2可以测量~ ~ 0.3 - 4兆电子伏~ 6.7 -35伏,质子与电子能量分辨率(ΔE / E)的电子和7% - -38%质子的1.5% - -5%。放射性源测试验证了仪器性能的有效性Geant4模拟。测量将启用一个新的科学理解内部辐射带,从无情的不必要的污染渗透的高能质子(数万兆电子伏GeV)是常见的,并提供详细的内部辐射带电子和量化质子的近地轨道是至关重要的空间天气建模。

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