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首页> 外文期刊>Nuclear instruments and methods in physics research >Design concept and modeling of a new Positron Identification by Coincident Annihilation Photons (PICAP) system
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Design concept and modeling of a new Positron Identification by Coincident Annihilation Photons (PICAP) system

机译:重合An灭光子(PICAP)系统识别正电子的设计概念和建模

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The Positron Identification by Coincident Annihilation Photons (PICAP) system is a new design concept to measure moderate energy (~few MeV) positrons and negatrons in space. Positron measurements in this energy range would open a window on cosmic ray propagation in the Galaxy, Solar modulation of cosmic rays (particularly charge-sign effects) and Solar energetic particles. Electrons of both charge signs are first identified by the conventional dE/dx versus residual energy technique. Coincident 511 keV annihilation photons are used to identify stopping positrons. This technique is far simpler than magnet spectrometers, which require elaborate tracking systems and associated electronics. We present a baseline design and Monte-Carlo modeling results using EGS4. We estimate the baseline instrument would mass ~4 kg and use ~3 W of power making such an instrument highly attractive for resource-constrained space missions.
机译:重合An灭光子正电子识别(PICAP)系统是一种新的设计概念,用于测量空间中的中等能量(〜几MeV)正电子和负电子。在此能量范围内的正电子测量将为宇宙射线在银河中的传播,宇宙射线的太阳调制(特别是电荷符号效应)和太阳高能粒子打开一个窗口。首先通过常规的dE / dx对残余能量技术识别两个电荷符号的电子。巧合的511keV ni灭光子用于识别正电子。该技术远比需要复杂的跟踪系统和相关电子设备的电磁光谱仪简单。我们提供了使用EGS4的基线设计和蒙特卡洛建模结果。我们估计基线仪器的质量约为〜4 kg,使用的功率约为〜3 W,因此对于资源受限的太空任务而言,这种仪器具有很高的吸引力。

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