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The SupraThermal Ion Monitor for space weather predictions

机译:超热离子监测仪,用于空间天气预报

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Measurement of suprathermal energy ions in the heliosphere has always been challenging because (1) these ions are situated in the energy regime only a few times higher than the solar wind plasma, where intensities are orders of magnitude higher and (2) ion energies are below or close to the threshold of state-of-art solid-state detectors. Suprathermal ions accelerated at coronal mass ejection-driven shocks propagate out ahead of the shocks. These shocks can cause geomagnetic storms in the Earth's magnetosphere that can affect spacecraft and ground-based power and communication systems. An instrument with sufficient sensitivity to measure these ions can be used to predict the arrival of the shocks and provide an advance warning for potentially geo-effective space weather. In this paper, we present a novel energy analyzer concept, the Suprathermal Ion Monitor (STIM) that is designed to measure suprathermal ions with high sensitivity. We show results from a laboratory prototype and demonstrate the feasibility of the concept. A list of key performances is given, as well as a discussion of various possible detectors at the back end. STIM is an ideal candidate for a future space weather monitor in orbit upstream of the near-earth environment, for example, around L1. A scaled-down version is suitable for a CubeSat mission. Such a platform allows proofing the concept and demonstrating its performance in the space environment.
机译:在太阳系中测量超热能离子一直是一项挑战,因为(1)这些离子的能量状态仅比太阳风等离子体高几倍,而太阳风等离子体的强度要高几个数量级,(2)离子能量低于或接近最先进的固态检测器的阈值。在日冕物质抛射驱动的激波中加速的超热离子在激波之前传播出去。这些冲击会在地球磁层中引起地磁风暴,从而影响航天器和地面电力和通信系统。具有足够灵敏度以测量这些离子的仪器可用于预测电击的到来并为潜在的地球有效太空天气提供预警。在本文中,我们介绍了一种新颖的能量分析仪概念,即超热离子监测器(STIM),其设计用于以高灵敏度测量超热离子。我们展示了实验室原型的结果,并证明了该概念的可行性。给出了关键性能的列表,并在后端讨论了各种可能的检测器。 STIM是在近地环境上游(例如,L1附近)轨道上的未来空间天气监控器的理想选择。缩小版本适用于CubeSat任务。这种平台可以验证概念并证明其在太空环境中的性能。

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