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首页> 外文期刊>Measurement Science & Technology >On variable geometric factor systems for top-hat electrostatic space plasma analyzers
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On variable geometric factor systems for top-hat electrostatic space plasma analyzers

机译:高顶静电空间等离子体分析仪的可变几何因子系统

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Even in the relatively small region of space that is the Earth's magnetosphere, ion and electron fluxes can vary by several orders of magnitude. Top-hat electrostatic analyzers currently do not possess the dynamic range required to sample plasma under all conditions. The purpose of this study was to compare, through computer simulation, three new electrostatic methods that would allow the sensitivity of a sensor to be varied through control of its geometric factor (GF) (much like an aperture on a camera). The methods studied were inner filter plates, split hemispherical analyzer (SHA) and top-cap electrode. This is the first discussion of the filter plate concept and also the first study where all three systems are studied within a common analyzer design, so that their relative merits could be fairly compared. Filter plates were found to have the important advantage that they facilitate the reduction in instrument sensitivity whilst keeping all other instrument parameters constant. However, it was discovered that filter plates have numerous disadvantages that make such a system impracticable for a top-hat electrostatic analyzer. It was found that both the top-cap electrode and SHA are promising variable geometric factor system (VGFS) concepts for implementation into a top-hat electrostatic analyzer, each with distinct advantages over the other.
机译:即使在相对较小的空间(即地球磁层)中,离子流和电子通量也可能变化几个数量级。目前,大礼帽静电分析仪不具备在所有条件下采样血浆所需的动态范围。这项研究的目的是通过计算机仿真比较三种新的静电方法,这些方法可以通过控制其几何因子(GF)(很像相机上的光圈)来改变传感器的灵敏度。研究的方法是内部滤板,分离式半球分析仪(SHA)和顶盖电极。这是关于滤板概念的首次讨论,也是第一次研究,即在同一分析仪设计中对所有三个系统进行研究,以便可以相对比较它们的优点。发现滤板具有重要的优势,即它们有助于降低仪器的灵敏度,同时保持所有其他仪器参数不变。然而,已发现滤板具有许多缺点,使得该系统对于高帽静电分析仪不可行。已经发现,顶帽电极和SHA都是有前途的可变几何因子系统(VGFS)概念,可实现到大礼帽静电分析仪中,彼此具有明显的优势。

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