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A summary on an investigation of GAGG:Ce afterglow emission in the context of future space applications within the HERMES nanosatellite mission

机译:纳米卫星任务中未来空间应用背景下的GAGG调查综述

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GAGG:Ce (Cerium-doped Gadolinium Aluminium Gallium Garnet) is a promising new scintillator crystal. A wide array of interesting features such as high light output, fast decay times, almost non-existent intrinsic background and robustness make GAGG:Ce an interesting candidate as a component of new space-based gamma-ray detectors. As a consequence of its novelty, literature on GAGG:Cc is still lacking on points crucial to its applicability in space missions. In particular, GAGG:Ce is characterized by unusually high and long-lasting delayed luminescence. This afterglow emission can be stimulated by the interactions between the seintillator and the particles of the near-Earth radiation environment. By contributing to the noise, it will impact the detector performance to some degree. In this manuscript we summarize the results of an irradiation campaign of GAGG:Ce crystals with protons, conducted in the framework of the HERMES-TP/SP (High Energy Rapid Modular Ensemble of Satellites - Technological and Scientific Pathfinder) mission. A GAGG:Ce sample was irradiated with 70 MeV protons, at doses equivalent to those expected in equatorial and sun-synchronous Low-Earth orbits over orbital periods spanning 6 months to 10 years, time lapses representative of satellite lifetimes. We introduce a new model of GAGG:Ce afterglow emission able to fully capture our observations. Results are applied to the HERMES-TP/SP scenario, aiming at an upper-bound estimate of the detector performance degradation due to the afterglow emission expected from the interaction between the seintillator and the near-Earth radiation environment.
机译:GAGG:Ce(铈掺杂的钆铝镓石榴石)是一个有前途的新的闪烁体晶体。宽阵列的有趣的特性如高的光输出,快速的衰变时间,几乎不存在固有的背景和鲁棒性化妆GAGG:Ce的一个有趣的候补作为新的基于空间的γ射线检测器的组件。由于其新颖性,关于GAGG的文献:CC仍然缺乏对太空任务适用性至关重要的观点。特别是GAGG:CE的特点是异常高,持久的延迟发光。该余辉发射可以通过烟蛋白和近地辐射环境的颗粒之间的相互作用来刺激。通过贡献噪音,它将影响探测器性能在某种程度上。在本手稿中,我们总结了GAGG的辐照活动:CE晶体与质子,在Hermes-TP / SP(卫星 - 技术和科学探查者)使命的高能量快速模块化队​​列的框架内进行。 GAGG:Ce样品用70meV质子照射,用剂量等同于赤道和太阳同步低地轨道上的预期的剂量,跨轨道周期跨越6个月至10年,时间流逝代表卫星寿命。我们介绍了一种新的GAGG模型:CE余辉排放能够完全捕捉我们的观察。结果应用于HERMES-TP / SP场景,旨在由于塞硝代铜和近地辐射环境之间的相互作用预期的余辉发射,对检测器性能降解的上限估计。

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